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• Blood is made up of…
– -Red Blood Cells
– -White Blood Cells
– -Platelets
– -Plasma
Copyright © 2010 Ryan P. Murphy
Human Body Unit
Part VII/XIII
• RED SLIDE: These are notes that are very
important and should be recorded in your
science journal.
Copyright © 2010 Ryan P. Murphy
-Nice neat notes that are legible and use
indentations when appropriate.
-Example of indent.
-Skip a line between topics
-Don’t skip pages
-Make visuals clear and well drawn. Please label.
Kidneys
Ureters
Urinary Bladder
• RED SLIDE: These are notes that are very
important and should be recorded in your
science journal.
• BLACK SLIDE: Pay attention, follow
directions, complete projects as described
and answer required questions neatly.
Copyright © 2010 Ryan P. Murphy
• Keep an eye out for “The-Owl” and raise
your hand as soon as you see him.
– He will be hiding somewhere in the slideshow
Copyright © 2010 Ryan P. Murphy
• Keep an eye out for “The-Owl” and raise
your hand as soon as you see him.
– He will be hiding somewhere in the slideshow
“Hoot, Hoot”
“Good Luck!”
Copyright © 2010 Ryan P. Murphy
 Blood: A specialized bodily fluid that
delivers necessary substances to the
body's cells.
Copyright © 2010 Ryan P. Murphy
• Blood: A specialized bodily fluid that
delivers necessary substances to the
body's cells.
– Such as nutrients and oxygen – and
transports waste products away from those
same cells.
Copyright © 2010 Ryan P. Murphy
• Activity! Making Blood Soup
– What is blood made of?
Copyright © 2010 Ryan P. Murphy
 Blood is made up of…
 -
 -
 -
 -
Copyright © 2010 Ryan P. Murphy
 Blood is made up of…
 -
 -
 -
 -
Copyright © 2010 Ryan P. Murphy
 Blood is made up of…
 Red Blood Cells
 -
 -
 -
Copyright © 2010 Ryan P. Murphy
 Blood is made up of…
 Red Blood Cells
 -
 -
 -
Copyright © 2010 Ryan P. Murphy
 Blood is made up of…
 Red Blood Cells
 White Blood Cells
 -
 -
Copyright © 2010 Ryan P. Murphy
 Blood is made up of…
 Red Blood Cells
 White Blood Cells
 -
 -
Copyright © 2010 Ryan P. Murphy
 Blood is made up of…
 Red Blood Cells
 White Blood Cells
 Platelets
 -
Copyright © 2010 Ryan P. Murphy
 Blood is made up of…
 Red Blood Cells
 White Blood Cells
 Platelets
 Plasma
Copyright © 2010 Ryan P. Murphy
• Blood is made up of…
– -Red Blood Cells
– -White Blood Cells
– -Platelets
– -Plasma
Copyright © 2010 Ryan P. Murphy
• Blood is made up of…
– -Red Blood Cells
– -White Blood Cells
– -Platelets
– -Plasma
• Blood is made up of…
– -Red Blood Cells
– -White Blood Cells
– -Platelets
– -Plasma
Copyright © 2010 Ryan P. Murphy
• Blood is made up of…
– -Red Blood Cells
– -White Blood Cells
– -Platelets
– -Plasma
• Blood is made up of…
– -Red Blood Cells
– -White Blood Cells
– -Platelets
– -Plasma
Copyright © 2010 Ryan P. Murphy
• Blood is made up of…
– -Red Blood Cells
– -White Blood Cells
– -Platelets
– -Plasma
Copyright © 2010 Ryan P. Murphy
• Blood is made up of…
– -Red Blood Cells
– -White Blood Cells
– -Platelets
– -Plasma
Copyright © 2010 Ryan P. Murphy
• Blood is made up of…
– -Red Blood Cells
– -White Blood Cells
– -Platelets
– -Plasma
Copyright © 2010 Ryan P. Murphy
• Blood is made up of…
– -Red Blood Cells
– -White Blood Cells
– -Platelets
– -Plasma
• Blood is made up of…
– -Red Blood Cells
– -White Blood Cells
– -Platelets
– -Plasma
• Blood is made up of…
– -Red Blood Cells
– -White Blood Cells
– -Platelets
– -Plasma
Copyright © 2010 Ryan P. Murphy
• Blood is made up of…
– -Red Blood Cells
– -White Blood Cells
– -Platelets
– -Plasma
Copyright © 2010 Ryan P. Murphy
• Blood is made up of…
– -Red Blood Cells
– -White Blood Cells
– -Platelets
– -Plasma
Copyright © 2010 Ryan P. Murphy
• Blood is made up of…
– -Red Blood Cells
– -White Blood Cells
– -Platelets
– -Plasma
Copyright © 2010 Ryan P. Murphy
• Blood is made up of…
– -Red Blood Cells
– -White Blood Cells
– -Platelets
– -Plasma
Copyright © 2010 Ryan P. Murphy
• Blood is made up of…
– -Red Blood Cells
– -White Blood Cells
– -Platelets
– -Plasma
Copyright © 2010 Ryan P. Murphy
• Blood is made up of…
– -Red Blood Cells
– -White Blood Cells
– -Platelets
– -Plasma
Copyright © 2010 Ryan P. Murphy
55%
55%
<1%
55%
<1%
45%
• Review:
Copyright © 2010 Ryan P. Murphy
• Review: Blood is a fluid tissue.
Copyright © 2010 Ryan P. Murphy
• Review: Blood is a fluid tissue. It delivers
food and oxygen to cells,
Copyright © 2010 Ryan P. Murphy
• Review: Blood is a fluid tissue. It delivers
food and oxygen to cells, carries away
waste products,
Copyright © 2010 Ryan P. Murphy
• Review: Blood is a fluid tissue. It delivers
food and oxygen to cells, carries away
waste products, aids in the prevention of
diseases,
Copyright © 2010 Ryan P. Murphy
• Review: Blood is a fluid tissue. It delivers
food and oxygen to cells, carries away
waste products, aids in the prevention of
diseases, and delivers chemical messages.
Copyright © 2010 Ryan P. Murphy
 Plasma: Fluid of blood, 90% water, 10%
sugars, fats, salts, gases, and proteins.
 Controls amount of water in blood
 Has antibody proteins that fight off disease
 Blood clotting agents
 Carries chemical messages (hormones)
 Carries waste products
Copyright © 2010 Ryan P. Murphy
• Plasma: Fluid of blood, 90% water, 10%
sugars, fats, salts, gases, and proteins.
– Controls amount of water in blood.
– Has antibody proteins that fight off disease
– Blood clotting agents
– Carries chemical messages (hormones)
– Carries waste products
Copyright © 2010 Ryan P. Murphy
• Plasma: Fluid of blood, 90% water, 10%
sugars, fats, salts, gases, and proteins.
– Controls amount of water in blood.
– Has antibody proteins that fight off disease.
– Blood clotting agents
– Carries chemical messages (hormones)
– Carries waste products
• Plasma: Fluid of blood, 90% water, 10%
sugars, fats, salts, gases, and proteins.
– Controls amount of water in blood.
– Has antibody proteins that fight off disease.
– Blood clotting agents.
– Carries chemical messages (hormones)
– Carries waste products
Copyright © 2010 Ryan P. Murphy
• Plasma: Fluid of blood, 90% water, 10%
sugars, fats, salts, gases, and proteins.
– Controls amount of water in blood.
– Has antibody proteins that fight off disease.
– Blood clotting agents.
– Carries chemical messages (hormones).
– Carries waste products
Copyright © 2010 Ryan P. Murphy
• Plasma: Fluid of blood, 90% water, 10%
sugars, fats, salts, gases, and proteins.
– Controls amount of water in blood.
– Has antibody proteins that fight off disease.
– Blood clotting agents.
– Carries chemical messages (hormones).
– Carries waste products.
Copyright © 2010 Ryan P. Murphy
• Activity! Blood Soup.
– Add 150 ml of water and 50 ml of sugar or
corn syrup to a clear plastic Zip-Lock Bag and
seal it.
– Record 55% plasma in Sharpie Marker on the
outside of the bag.
55% Plasma
Copyright © 2010 Ryan P. Murphy
 Red Blood Cells: Produced in bone
marrow, no nucleus in cell (mature
cell), delivers oxygen to cells, carries away
CO2.
Copyright © 2010 Ryan P. Murphy
• Red Blood Cells: Produced in bone
marrow, no nucleus in cell (mature
cell), delivers oxygen to cells, carries away
CO2.
– Hemoglobin: Protein in blood that helps blood
bind with oxygen and carbon dioxide.
Copyright © 2010 Ryan P. Murphy
• Please sketch the unique shape of the red
blood cell in your journal.
Copyright © 2010 Ryan P. Murphy
• Please sketch the unique shape of the red
blood cell in your journal.
Shape allows the cell to bend and
squeeze through tight places.
Mature RBC has no
nucleus which allows
more room for
important gases and
hemoglobin.
120 day life span and
then destroyed in
spleen and liver
Most numerous cell in body. 5 million
RBC in one drop of blood.
Shape
allows the
maximum
amount of
surface
area for gas
exchange.
Copyright © 2010 Ryan P. Murphy
• Please sketch the unique shape of the red
blood cell in your journal.
Shape allows the cell to bend and
squeeze through tight places.
Mature RBC has no
nucleus which allows
more room for
important gases and
hemoglobin.
120 day life span and
then destroyed in
spleen
Most numerous cell in body. 5 million
RBC in one drop of blood.
Shape
allows the
maximum
amount of
surface
area for gas
exchange.
Copyright © 2010 Ryan P. Murphy
• Please sketch the unique shape of the red
blood cell in your journal.
Shape allows the cell to bend and
squeeze through tight places.
Mature RBC has no
nucleus which allows
more room for
important gases and
hemoglobin.
120 day life span and
then destroyed in
spleen
Most numerous cell in body. 5 million
RBC in one drop of blood.
Shape
allows the
maximum
amount of
surface
area for gas
exchange.
Copyright © 2010 Ryan P. Murphy
• Please sketch the unique shape of the red
blood cell in your journal.
Shape allows the cell to bend and
squeeze through tight places.
Mature RBC has no
nucleus which allows
more room for
important gases and
hemoglobin.
120 day life span and
then destroyed in
spleen
Most numerous cell in body. 5 million
RBC in one drop of blood.
Shape
allows the
maximum
amount of
surface
area for gas
exchange.
Copyright © 2010 Ryan P. Murphy
• Please sketch the unique shape of the red
blood cell in your journal.
Shape allows the cell to bend and
squeeze through tight places.
Mature RBC has no
nucleus which allows
more room for
important gases and
hemoglobin.
120 day life span and
then destroyed in
spleen
Most numerous cell in body. 5 million
RBC in one drop of blood.
Shape
allows the
maximum
amount of
surface
area for gas
exchange.
Copyright © 2010 Ryan P. Murphy
• Please sketch the unique shape of the red
blood cell in your journal.
Shape allows the cell to bend and
squeeze through tight places.
Mature RBC has no
nucleus which allows
more room for
important gases and
hemoglobin.
120 day life span and
then destroyed in
spleen
Most numerous cell in body. 5 million
RBC in one drop of blood.
Shape
allows the
maximum
amount of
surface
area for gas
exchange.
Copyright © 2010 Ryan P. Murphy
• Please sketch the unique shape of the red
blood cell in your journal.
Shape allows the cell to bend and
squeeze through tight places.
Mature RBC has no
nucleus which allows
more room for
important gases and
hemoglobin.
120 day life span and
then destroyed in
spleen
Most numerous cell in body. 5 million
RBC in one drop of blood.
Shape
allows the
maximum
amount of
surface
area for gas
exchange.
Copyright © 2010 Ryan P. Murphy
• Please sketch the unique shape of the red
blood cell in your journal.
Shape allows the cell to bend and
squeeze through tight places.
Mature RBC has no
nucleus which allows
more room for
important gases and
hemoglobin.
120 day life span and
then destroyed in
spleen
Most numerous cell in body. 5 million
RBC in one drop of blood.
Shape
allows the
maximum
amount of
surface
area for gas
exchange.
Copyright © 2010 Ryan P. Murphy
• Please sketch the unique shape of the red
blood cell in your journal.
Shape allows the cell to bend and
squeeze through tight places.
Mature RBC has no
nucleus which allows
more room for
important gases and
hemoglobin.
120 day life span and
then destroyed in
spleen
Most numerous cell in body. 5 million
RBC in one drop of blood.
Shape
allows the
maximum
amount of
surface
area for gas
exchange.
Copyright © 2010 Ryan P. Murphy
• Please sketch the unique shape of the red
blood cell in your journal.
Shape allows the cell to bend and
squeeze through tight places.
Mature RBC has no
nucleus which allows
more room for
important gases and
hemoglobin.
120 day life span and
then destroyed in
spleen
Most numerous cell in body. 5 million
RBC in one drop of blood.
Shape
allows the
maximum
amount of
surface
area for gas
exchange.
Copyright © 2010 Ryan P. Murphy
• Please sketch the unique shape of the red
blood cell in your journal.
Shape allows the cell to bend and
squeeze through tight places.
Mature RBC has no
nucleus which allows
more room for
important gases and
hemoglobin.
120 day life span and
then destroyed in
spleen
Most numerous cell in body. 5 million
RBC in one drop of blood.
Shape
allows the
maximum
amount of
surface
area for gas
exchange.
Copyright © 2010 Ryan P. Murphy
• Please sketch the unique shape of the red
blood cell in your journal.
Shape allows the cell to bend and
squeeze through tight places.
Mature RBC has no
nucleus which allows
more room for
important gases and
hemoglobin.
120 day life span and
then destroyed in
spleen
Most numerous cell in body. 5 million
RBC in one drop of blood.
Shape
allows the
maximum
amount of
surface
area for gas
exchange.
Copyright © 2010 Ryan P. Murphy
• Activity! Making Blood Soup
– Add several (100 + Red Hot candies or Red Tic-
Tac’s or other small Red candy in the relative shape
of a disc, that won’t dissolve quickly) into the Zip-
Lock bag and seal it.
– Record 45% RBC’s on the bag in black
sharpie.
55% plasma
45% RBC’s
Copyright © 2010 Ryan P. Murphy
 White Blood Cells: Circulate throughout the
body providing protection against foreign
organisms and matter.
Copyright © 2010 Ryan P. Murphy
• Please sketch out a white blood cell in
your journal. Make twice as large as RBC.
Can surround and digest foreign
organisms such as viruses and
bacteria.
Outnumbered by
RBC’s 500 to 1
Twice
as
large
as a
RBC.
Has a nucleus and
can live considerably
longer than a RBC.
They can self
replicate / divide.
Other WBC’s can make
antibodies.
Copyright © 2010 Ryan P. Murphy
• Please sketch out a white blood cell in
your journal. Make twice as large as RBC.
Can surround and digest foreign
organisms such as viruses and
bacteria.
Outnumbered by
RBC’s 500 to 1
Twice
as
large
as a
RBC.
Has a nucleus and
can live considerably
longer than a RBC.
They can self
replicate / divide.
Other WBC’s can make
antibodies.
Copyright © 2010 Ryan P. Murphy
• Please sketch out a white blood cell in
your journal. Make twice as large as RBC.
Can surround and digest foreign
organisms such as viruses and
bacteria.
Outnumbered by
RBC’s 500 to 1
Twice
as
large
as a
RBC.
Has a nucleus and
can live considerably
longer than a RBC.
They can self
replicate / divide.
Other WBC’s can make
antibodies.
Copyright © 2010 Ryan P. Murphy
• Please sketch out a white blood cell in
your journal. Make twice as large as RBC.
Can surround and digest foreign
organisms such as viruses and
bacteria.
Outnumbered by
RBC’s 500 to 1
Twice
as
large
as a
RBC.
Has a nucleus and
can live considerably
longer than a RBC.
They can self
replicate / divide.
Other WBC’s can make
antibodies.
Copyright © 2010 Ryan P. Murphy
• Please sketch out a white blood cell in
your journal. Make twice as large as RBC.
Can surround and digest foreign
organisms such as viruses and
bacteria.
Outnumbered by
RBC’s 500 to 1
Twice
as
large
as a
RBC.
Has a nucleus and
can live considerably
longer than a RBC.
They can self
replicate / divide.
Other WBC’s can make
antibodies.
Copyright © 2010 Ryan P. Murphy
• Please sketch out a white blood cell in
your journal. Make twice as large as RBC.
Can surround and digest foreign
organisms such as viruses and
bacteria.
Outnumbered by
RBC’s 500 to 1
Twice
as
large
as a
RBC.
Has a nucleus and
can live considerably
longer than a RBC.
They can self
replicate / divide.
Other WBC’s can make
antibodies.
Copyright © 2010 Ryan P. Murphy
• Please sketch out a white blood cell in
your journal. Make twice as large as RBC.
Can surround and digest foreign
organisms such as viruses and
bacteria.
Outnumbered by
RBC’s 500 to 1
Twice
as
large
as a
RBC.
Has a nucleus and
can live considerably
longer than a RBC.
They can self
replicate / divide.
Other WBC’s can make
antibodies.
Copyright © 2010 Ryan P. Murphy
• Please sketch out a white blood cell in
your journal. Make twice as large as RBC.
Can surround and digest foreign
organisms such as viruses and
bacteria.
Outnumbered by
RBC’s 500 to 1
Twice
as
large
as a
RBC.
Has a nucleus and
can live considerably
longer than a RBC.
They can self
replicate / divide.
Other WBC’s can make
antibodies.
Copyright © 2010 Ryan P. Murphy
• Please sketch out a white blood cell in
your journal. Make twice as large as RBC.
Can surround and digest foreign
organisms such as viruses and
bacteria.
Outnumbered by
RBC’s 500 to 1
Twice
as
large
as a
RBC.
Has a nucleus and
can live considerably
longer than a RBC.
They can self
replicate / divide.
Other WBC’s can make
antibodies.
Copyright © 2010 Ryan P. Murphy
• Activity! Blood Soup.
– Add a few mini- marshmallows to the clear
plastic Zip-Lock Bag and seal it.
– Record <1% WBC’s on the bag in black
Sharpie Marker.
100 ml Plasma
55% Plasma
45% RBC’s
<1% WBC’s
Copyright © 2010 Ryan P. Murphy
 Platelets: Irregularly shaped bodies with
sticky surfaces that form clots to stop
bleeding.
Copyright © 2010 Ryan P. Murphy
• Please sketch a platelet below.
.
Copyright © 2010 Ryan P. Murphy
• Please sketch a platelet below.
Only lives
for 5-9
days.
Copyright © 2010 Ryan P. Murphy
• Please sketch a platelet below.
Prevents blood
loss and allows
homeostasis.
Only lives
for 5-9
days.
Copyright © 2010 Ryan P. Murphy
• Please sketch a platelet below.
Prevents blood
loss and allows
homeostasis.
Only lives
for 5-9
days.
Platelets can sense air
and begin clotting a cut
very quickly.
Copyright © 2010 Ryan P. Murphy
• Please sketch a platelet below.
Prevents blood
loss and allows
homeostasis.
Only lives
for 5-9
days.
Platelets can sense air
and begin clotting a cut
very quickly.
Clots can be very
dangerous if they block a
blood vessel such as
those in your brain
(stroke).
Copyright © 2010 Ryan P. Murphy
• Please sketch a platelet below.
Prevents blood
loss and allows
homeostasis.
Not cells but tiny
fragments of
other cells.
Only lives
for 5-9
days.
Platelets can sense air
and begin clotting a cut
very quickly.
Clots can be very
dangerous if they block a
blood vessel such as
those in your brain
(stroke).
Copyright © 2010 Ryan P. Murphy
• Activity! Blood Soup.
– Add a few Rice Krispies to the soup.
– Record <1% Platelets on the bag in black
Sharpie Marker.
100 ml Plasma
55% Plasma
45% RBC’s
<1% WBC’s
<1% Platelets
Copyright © 2010 Ryan P. Murphy
• Activity! Blood Soup.
– Add one of the following blood types in huge
visible Sharpie Marker to the bag.
– A+, A-, B+, B-, AB+, AB-, O+, O-
100 ml Plasma
55% Plasma
45% RBC’s
<1% WBC’s
<1% Platelets
AB+
Copyright © 2010 Ryan P. Murphy
• Blood Soup!
– Record a quick picture of your blood soup
with the stat sheet on the front.
– Teacher can add a few drops of red food
coloring to taste.
– Students can divide equally into small cups
and enjoy (Optional).
55% Plasma
45% RBC’s
<1% WBC’s
<1% Platelets AB+
Copyright © 2010 Ryan P. Murphy
• Video Song Link! Blood
• http://www.youtube.com/watch?v=j3HDrif
RENE
• Try and guess the mystery picture beneath
the boxes.
– Raise your hand when you think you know.
You only get one guess.
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
• You can now complete parts to this page
in your bundled homework.
• Can you freely exchange blood from one
person to another?
Copyright © 2010 Ryan P. Murphy
• Answer: Yes and No.
Copyright © 2010 Ryan P. Murphy
• Answer: Yes and No. For many
years, blood transfusions were
unsuccessful leading to horrible clotting
and death.
Copyright © 2010 Ryan P. Murphy
• Answer: Yes and No. For many
years, blood transfusions were
unsuccessful leading to horrible clotting
and death. American scientist Karl
Landsteiner helped the world to
understand the science of blood groups
which has lead to safer blood transfusions.
Copyright © 2010 Ryan P. Murphy
• If you are given the wrong blood, your
body attacks it as if it is a foreign invader.
The differences in human blood are due to
the presence or absence of certain protein
molecules called antigens and antibodies.
The antigens are located on the surface of
the red blood cells and the antibodies are
in the blood plasma. Individuals have
different types and combinations of these
molecules passed to you by your parents.
Copyright © 2010 Ryan P. Murphy
• If you are given the wrong blood, your
body attacks it as if it is a foreign invader.
The differences in human blood are due to
the presence or absence of certain protein
molecules called antigens and antibodies.
The antigens are located on the surface of
the red blood cells and the antibodies are
in the blood plasma. Individuals have
different types and combinations of these
molecules passed to you by your parents.
Copyright © 2010 Ryan P. Murphy
• If you are given the wrong blood, your
body attacks it as if it is a foreign invader.
The differences in human blood are due to
the presence or absence of certain protein
molecules called antigens and antibodies.
The antigens are located on the surface of
the red blood cells and the antibodies are
in the blood plasma. Individuals have
different types and combinations of these
molecules passed to you by your parents.
Copyright © 2010 Ryan P. Murphy
• If you are given the wrong blood, your
body attacks it as if it is a foreign invader.
The differences in human blood are due to
the presence or absence of certain protein
molecules called antigens and antibodies.
The antigens are located on the surface of
the red blood cells and the antibodies are
in the blood plasma. Individuals have
different types and combinations of these
molecules passed to you by your parents.
Copyright © 2010 Ryan P. Murphy
• Antibodies clinging to a virus. They will
prevent the virus from infecting a cell.
Copyright © 2010 Ryan P. Murphy
• Antigen: A substance that when
introduced into the body stimulates the
production of an antibody.
Copyright © 2010 Ryan P. Murphy
• Antigen: A substance that when
introduced into the body stimulates the
production of an antibody.
Invading
Blood
Copyright © 2010 Ryan P. Murphy
• Antigen: A substance that when
introduced into the body stimulates the
production of an antibody.
• Antibody: A blood protein produced in
response to and counteracting a specific
antigen.
Invading
Blood
Copyright © 2010 Ryan P. Murphy
• Antigen: A substance that when
introduced into the body stimulates the
production of an antibody.
• Antibody: A blood protein produced in
response to and counteracting a specific
antigen.
Invading
Blood
Copyright © 2010 Ryan P. Murphy
• Antigen: A substance that when
introduced into the body stimulates the
production of an antibody.
• Antibody: A blood protein produced in
response to and counteracting a specific
antigen.
Invading
Blood
Copyright © 2010 Ryan P. Murphy
• Antigen: A substance that when
introduced into the body stimulates the
production of an antibody.
• Antibody: A blood protein produced in
response to and counteracting a specific
antigen.
Invading
Blood
Copyright © 2010 Ryan P. Murphy
• Antigen: A substance that when
introduced into the body stimulates the
production of an antibody.
• Antibody: A blood protein produced in
response to and counteracting a specific
antigen.
Invading
Blood
Copyright © 2010 Ryan P. Murphy
• Antigen: A substance that when
introduced into the body stimulates the
production of an antibody.
• Antibody: A blood protein produced in
response to and counteracting a specific
antigen.
Invading
Blood
Causes clotting in
incorrect blood
transfusions
Copyright © 2010 Ryan P. Murphy
• In this blood, the antigen on the surface of
the red blood cell does not bind with the
antigen in the plasma
Normal
Blood
Copyright © 2010 Ryan P. Murphy
• In this blood, the antigen on the surface of
the red blood cell does not bind with the
antigen in the plasma
Normal
Blood
Copyright © 2010 Ryan P. Murphy
• In this blood, the antigen on the surface of
the red blood cell does not bind with the
antigen in the plasma
Normal
Blood
Copyright © 2010 Ryan P. Murphy
• In this blood, the antigen on the surface of
the red blood cell does not bind with the
antigen in the plasma
Normal
Blood
Copyright © 2010 Ryan P. Murphy
• In this blood, the antigen on the surface of
the red blood cell does not bind with the
antigen in the plasma
Normal
Blood
Copyright © 2010 Ryan P. Murphy
• In this blood, the antigen on the surface of
the red blood cell does not bind with the
antigen in the plasma
Normal
Blood
Copyright © 2010 Ryan P. Murphy
• In this blood, the antigen on the surface of
the red blood cell does not bind with the
antigen in the plasma
Normal
Blood
Copyright © 2010 Ryan P. Murphy
• In this blood, the antigen on the surface of
the red blood cell does not bind with the
antigen in the plasma
Normal
Blood
Copyright © 2010 Ryan P. Murphy
• Please sketch the following in your journal.
Copyright © 2010 Ryan P. Murphy
Blood Groups
Copyright © 2010 Ryan P. Murphy
Blood Groups
A
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
Antibody
No
reaction to
antibodies
B Antigen
on surface
of cell, and
A Antibody
Both A and B antigens
on the surface of your
red blood cells and no
A or B antibodies at all
in your blood plasma.
Antibody
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
No
reaction to
antibodies
B Antigen
on surface
of cell, and
A Antibody
Both A and B antigens
on the surface of your
red blood cells and no
A or B antibodies at all
in your blood plasma.
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
Antibody
No
reaction to
antibodies
B Antigen
on surface
of cell, and
A Antibody
Both A and B antigens
on the surface of your
red blood cells and no
A or B antibodies at all
in your blood plasma.
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
Antibody
No
reaction to
antibodies
B Antigen
on surface
of cell, and
A Antibody
Both A and B antigens
on the surface of your
red blood cells and no
A or B antibodies at all
in your blood plasma.
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
Antibody
No
reaction to
antibodies
B Antigen
on surface
of cell, and
A Antibody
Both A and B antigens
on the surface of your
red blood cells and no
A or B antibodies at all
in your blood plasma.
Antibody
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
A
Antibody
No
reaction to
antibodies
B Antigen
on surface
of cell, and
A Antibody
Both A and B antigens
on the surface of your
red blood cells and no
A or B antibodies at all
in your blood plasma.
Antibody
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
A Antigen
Antibody
No
reaction to
antibodies
B Antigen
on surface
of cell, and
A Antibody
Both A and B antigens
on the surface of your
red blood cells and no
A or B antibodies at all
in your blood plasma.
Antibody
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
A Antigen
Antibody
No
reaction to
antibodies
B Antigen
on surface
of cell, and
A Antibody
Both A and B antigens
on the surface of your
red blood cells and no
A or B antibodies at all
in your blood plasma.
Antibody
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
A Antigen
B Antigen
Antibody
No
reaction to
antibodies
B Antigen
on surface
of cell, and
A Antibody
Both A and B antigens
on the surface of your
red blood cells and no
A or B antibodies at all
in your blood plasma.
Antibody
Copyright © 2010 Ryan P. Murphy
• Antigen: A substance that when
introduced into the body stimulates the
production of an antibody.
• Antibody: A blood protein produced in
response to and counteracting a specific
antigen.
Copyright © 2010 Ryan P. Murphy
• Antigen: A substance that when
introduced into the body stimulates the
production of an antibody.
• Antibody: A blood protein produced in
response to and counteracting a specific
antigen.
Copyright © 2010 Ryan P. Murphy
• Antigen: A substance that when
introduced into the body stimulates the
production of an antibody.
• Antibody: A blood protein produced in
response to and counteracting a specific
antigen.
Copyright © 2010 Ryan P. Murphy
• Antigen: A substance that when
introduced into the body stimulates the
production of an antibody.
• Antibody: A blood protein produced in
response to and counteracting a specific
antigen. Found in plasma of blood.
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
No
reaction to
antibodies
A Antigen
on surface
of cell, and
B Antibody
B Antigen
on surface
of cell, and
A Antibody
Both A and B antigens
on the surface of your
red blood cells and no
A or B antibodies at all
in your blood plasma.
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
No
reaction to
antibodies
A Antigen
on surface
of cell, and
B Antibody
B Antigen
on surface
of cell, and
A Antibody
Both A and B antigens
on the surface of your
red blood cells and no
A or B antibodies at all
in your blood plasma.
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
No
reaction to
antibodies
A Antigen
on surface
of cell, and
B Antibody
B Antigen
on surface
of cell, and
A Antibody
Both A and B antigens
on the surface of your
red blood cells and no
A or B antibodies at all
in your blood plasma.
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
A Antigen
on surface
of cell, and
B Antibody
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
A Antigen
on surface
of cell, and
B Antibody
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
A Antigen
on surface
of cell, and
B Antibody
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
A Antigen
on surface
of cell, and
B Antibody
in plasma
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
A Antigen
on surface
of cell, and
B Antibody
in plasma
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
A Antigen
on surface
of cell, and
B Antibody
in plasma
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
A Antigen
on surface
of cell, and
B Antibody
in plasma
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
A Antigen
on surface
of cell, and
B Antibody
in plasma
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
A Antigen
on surface
of cell, and
B Antibody
in plasma
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
A Antigen
on surface
of cell, and
B Antibody
in plasma
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
A Antigen
on surface
of cell, and
B Antibody
in plasma
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
A Antigen
on surface
of cell, and
B Antibody
in plasma
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
A Antigen
on surface
of cell, and
B Antibody
in plasma
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
A Antigen
on surface
of cell, and
B Antibody
in plasma
B Antigen
on surface
of cell, and
A Antibody
in plasma
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
A Antigen
on surface
of cell, and
B Antibody
in plasma
B Antigen
on surface
of cell, and
A Antibody
in plasma
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
A Antigen
on surface
of cell, and
B Antibody
in plasma
B Antigen
on surface
of cell, and
A Antibody
in plasma
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
A Antigen
on surface
of cell, and
B Antibody
in plasma
B Antigen
on surface
of cell, and
A Antibody
in plasma
Both A and B antigens
on the surface of your
red blood cells and no
A or B antibodies at all
in your blood plasma.
Copyright © 2010 Ryan P. Murphy
Blood Groups
A B
AB O
No
Active
Antigens
A Antigen
on surface
of cell, and
B Antibody
in plasma
B Antigen
on surface
of cell, and
A Antibody
in plasma
Both A and B antigens
on the surface of your
red blood cells and no
A or B antibodies at all
in your blood plasma.
Copyright © 2010 Ryan P. Murphy
• Name the correct blood type beneath the box.
Copyright © 2010 Ryan P. Murphy
• Name the correct blood type beneath the box.
Copyright © 2010 Ryan P. Murphy
• Name the correct blood type beneath the box.
Copyright © 2010 Ryan P. Murphy
• Name the correct blood type beneath the box.
Copyright © 2010 Ryan P. Murphy
• Name the correct blood type beneath the box.
Copyright © 2010 Ryan P. Murphy
• Name the correct blood type beneath the box.
Copyright © 2010 Ryan P. Murphy
• Name the correct blood type beneath the box.
Copyright © 2010 Ryan P. Murphy
• Name the correct blood type beneath the box.
Copyright © 2010 Ryan P. Murphy
• Name the correct blood type beneath the box.
Copyright © 2010 Ryan P. Murphy
“I hate routines.”
Copyright © 2010 Ryan P. Murphy
• Name the correct blood type beneath the box.
Copyright © 2010 Ryan P. Murphy
• Name the correct blood type beneath the box.
Copyright © 2010 Ryan P. Murphy
• Name the correct blood type beneath the box.
Copyright © 2010 Ryan P. Murphy
• Name the correct blood type beneath the box.
Copyright © 2010 Ryan P. Murphy
• Name the correct blood type beneath the box.
Copyright © 2010 Ryan P. Murphy
• Name the correct blood type beneath the box.
Copyright © 2010 Ryan P. Murphy
• Name the correct blood type beneath the box.
Copyright © 2010 Ryan P. Murphy
• Name the correct blood type beneath the box.
Copyright © 2010 Ryan P. Murphy
• Name the correct blood type beneath the box.
Copyright © 2010 Ryan P. Murphy
“Phyillis!”
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
“Quick, we need a
transfusion.”
“She’s type Marshmall O-”
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
Type O+ blood
contains no
antigens
therefore if it
receives blood
from and
A, B, or AB
persons the
body will make
antibodies
against it and
cause a
Hemolytic
condition.
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
O- can only
accept O- blood
Copyright © 2010 Ryan P. Murphy
Copyright © 2010 Ryan P. Murphy
O-, O+
Copyright © 2010 Ryan P. Murphy
O-, O+ A+/-
Copyright © 2010 Ryan P. Murphy
O-, O+ A+/-
AB+/AB-
Copyright © 2010 Ryan P. Murphy
O-, O+ A+/-
AB+/AB-
B+/ B-
Copyright © 2010 Ryan P. Murphy
O-, O+ A+/-
AB+/AB-
B+/ B-
O- Negative is
the universal
donor.
Copyright © 2010 Ryan P. Murphy
“It’s too late, look
at all that fluff.”
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
“The teacher didn’t
discuss Rh factors?”
• There is another antigen that some people
may have.
– If you have it your… Rh+
– If you don’t your… Rh-
Copyright © 2010 Ryan P. Murphy
• There is another antigen that some people
may have.
– If you have it your… Rh+
– If you don’t your… Rh-
– Rh+ should not share blood with someone
who is Rh-
–
Copyright © 2010 Ryan P. Murphy
• There is another antigen that some people
may have.
– If you have it your… Rh+
– If you don’t your… Rh-
– Rh+ should not share blood with someone
who is Rh-
– Rh- can give to a person who is Rh+
Copyright © 2010 Ryan P. Murphy
• There is another antigen that some people
may have.
– If you have it your… Rh+
– If you don’t your… Rh-
– Rh+ should not share blood with someone
who is Rh-
– Rh- can give to a person who is Rh+
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
“Thanks for bringing
up that Rh Factor
thing.”
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
“Quick, her blood
sugar is low.”
• Circulatory System Available Sheet.
Learn more about blood types at…
http://www.redcrossblood.org/learn-about-blood/blood-
types
• You can now complete parts to this page
in your bundled homework.
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
“Her blood sugar
is too high.”
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
• Will the boxes above and below = safe transfusion
1 2
Copyright © 2010 Ryan P. Murphy
“This has to be the
last one.”
• Will the boxes above and below = safe transfusion
1 2
• Will the boxes above and below = safe transfusion
1 2
• Will the boxes above and below = safe transfusion
1 2
• Will the boxes above and below = safe transfusion
1 2
• Will the boxes above and below = safe transfusion
1 2
• Will the boxes above and below = safe transfusion
1 2
• Will the boxes above and below = safe transfusion
1 2
• Will the boxes above and below = safe transfusion
1 2
1 2
• Circulatory System Available Sheet.
• Overview of the cardiovascular system
at…
– http://www.innerbody.com/image/cardov.html
• Last Video! Blood Types, the blood
supply, and donating blood.
– http://www.youtube.com/watch?v=wN--
_z9eyJU
Copyright © 2010 Ryan P. Murphy
Bundled homework package, lesson
notes, worksheets, review games, and much more on the
full unit.

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Blood Cells and Blood Type Lesson PowerPoint, Make Blood Soup

  • 1. • Blood is made up of… – -Red Blood Cells – -White Blood Cells – -Platelets – -Plasma Copyright © 2010 Ryan P. Murphy
  • 2.
  • 4. • RED SLIDE: These are notes that are very important and should be recorded in your science journal. Copyright © 2010 Ryan P. Murphy
  • 5. -Nice neat notes that are legible and use indentations when appropriate. -Example of indent. -Skip a line between topics -Don’t skip pages -Make visuals clear and well drawn. Please label. Kidneys Ureters Urinary Bladder
  • 6. • RED SLIDE: These are notes that are very important and should be recorded in your science journal. • BLACK SLIDE: Pay attention, follow directions, complete projects as described and answer required questions neatly. Copyright © 2010 Ryan P. Murphy
  • 7. • Keep an eye out for “The-Owl” and raise your hand as soon as you see him. – He will be hiding somewhere in the slideshow Copyright © 2010 Ryan P. Murphy
  • 8. • Keep an eye out for “The-Owl” and raise your hand as soon as you see him. – He will be hiding somewhere in the slideshow “Hoot, Hoot” “Good Luck!” Copyright © 2010 Ryan P. Murphy
  • 9.  Blood: A specialized bodily fluid that delivers necessary substances to the body's cells. Copyright © 2010 Ryan P. Murphy
  • 10. • Blood: A specialized bodily fluid that delivers necessary substances to the body's cells. – Such as nutrients and oxygen – and transports waste products away from those same cells. Copyright © 2010 Ryan P. Murphy
  • 11. • Activity! Making Blood Soup – What is blood made of? Copyright © 2010 Ryan P. Murphy
  • 12.  Blood is made up of…  -  -  -  - Copyright © 2010 Ryan P. Murphy
  • 13.  Blood is made up of…  -  -  -  - Copyright © 2010 Ryan P. Murphy
  • 14.  Blood is made up of…  Red Blood Cells  -  -  - Copyright © 2010 Ryan P. Murphy
  • 15.  Blood is made up of…  Red Blood Cells  -  -  - Copyright © 2010 Ryan P. Murphy
  • 16.  Blood is made up of…  Red Blood Cells  White Blood Cells  -  - Copyright © 2010 Ryan P. Murphy
  • 17.  Blood is made up of…  Red Blood Cells  White Blood Cells  -  - Copyright © 2010 Ryan P. Murphy
  • 18.  Blood is made up of…  Red Blood Cells  White Blood Cells  Platelets  - Copyright © 2010 Ryan P. Murphy
  • 19.  Blood is made up of…  Red Blood Cells  White Blood Cells  Platelets  Plasma Copyright © 2010 Ryan P. Murphy
  • 20. • Blood is made up of… – -Red Blood Cells – -White Blood Cells – -Platelets – -Plasma Copyright © 2010 Ryan P. Murphy
  • 21. • Blood is made up of… – -Red Blood Cells – -White Blood Cells – -Platelets – -Plasma
  • 22. • Blood is made up of… – -Red Blood Cells – -White Blood Cells – -Platelets – -Plasma Copyright © 2010 Ryan P. Murphy
  • 23. • Blood is made up of… – -Red Blood Cells – -White Blood Cells – -Platelets – -Plasma
  • 24. • Blood is made up of… – -Red Blood Cells – -White Blood Cells – -Platelets – -Plasma Copyright © 2010 Ryan P. Murphy
  • 25. • Blood is made up of… – -Red Blood Cells – -White Blood Cells – -Platelets – -Plasma Copyright © 2010 Ryan P. Murphy
  • 26. • Blood is made up of… – -Red Blood Cells – -White Blood Cells – -Platelets – -Plasma Copyright © 2010 Ryan P. Murphy
  • 27. • Blood is made up of… – -Red Blood Cells – -White Blood Cells – -Platelets – -Plasma Copyright © 2010 Ryan P. Murphy
  • 28. • Blood is made up of… – -Red Blood Cells – -White Blood Cells – -Platelets – -Plasma
  • 29. • Blood is made up of… – -Red Blood Cells – -White Blood Cells – -Platelets – -Plasma
  • 30. • Blood is made up of… – -Red Blood Cells – -White Blood Cells – -Platelets – -Plasma Copyright © 2010 Ryan P. Murphy
  • 31. • Blood is made up of… – -Red Blood Cells – -White Blood Cells – -Platelets – -Plasma Copyright © 2010 Ryan P. Murphy
  • 32. • Blood is made up of… – -Red Blood Cells – -White Blood Cells – -Platelets – -Plasma Copyright © 2010 Ryan P. Murphy
  • 33. • Blood is made up of… – -Red Blood Cells – -White Blood Cells – -Platelets – -Plasma Copyright © 2010 Ryan P. Murphy
  • 34. • Blood is made up of… – -Red Blood Cells – -White Blood Cells – -Platelets – -Plasma Copyright © 2010 Ryan P. Murphy
  • 35. • Blood is made up of… – -Red Blood Cells – -White Blood Cells – -Platelets – -Plasma Copyright © 2010 Ryan P. Murphy
  • 36. • Blood is made up of… – -Red Blood Cells – -White Blood Cells – -Platelets – -Plasma Copyright © 2010 Ryan P. Murphy
  • 37.
  • 38.
  • 39.
  • 40.
  • 41.
  • 42.
  • 43.
  • 44. 55%
  • 47. • Review: Copyright © 2010 Ryan P. Murphy
  • 48. • Review: Blood is a fluid tissue. Copyright © 2010 Ryan P. Murphy
  • 49. • Review: Blood is a fluid tissue. It delivers food and oxygen to cells, Copyright © 2010 Ryan P. Murphy
  • 50. • Review: Blood is a fluid tissue. It delivers food and oxygen to cells, carries away waste products, Copyright © 2010 Ryan P. Murphy
  • 51. • Review: Blood is a fluid tissue. It delivers food and oxygen to cells, carries away waste products, aids in the prevention of diseases, Copyright © 2010 Ryan P. Murphy
  • 52. • Review: Blood is a fluid tissue. It delivers food and oxygen to cells, carries away waste products, aids in the prevention of diseases, and delivers chemical messages. Copyright © 2010 Ryan P. Murphy
  • 53.  Plasma: Fluid of blood, 90% water, 10% sugars, fats, salts, gases, and proteins.  Controls amount of water in blood  Has antibody proteins that fight off disease  Blood clotting agents  Carries chemical messages (hormones)  Carries waste products Copyright © 2010 Ryan P. Murphy
  • 54. • Plasma: Fluid of blood, 90% water, 10% sugars, fats, salts, gases, and proteins. – Controls amount of water in blood. – Has antibody proteins that fight off disease – Blood clotting agents – Carries chemical messages (hormones) – Carries waste products Copyright © 2010 Ryan P. Murphy
  • 55. • Plasma: Fluid of blood, 90% water, 10% sugars, fats, salts, gases, and proteins. – Controls amount of water in blood. – Has antibody proteins that fight off disease. – Blood clotting agents – Carries chemical messages (hormones) – Carries waste products
  • 56. • Plasma: Fluid of blood, 90% water, 10% sugars, fats, salts, gases, and proteins. – Controls amount of water in blood. – Has antibody proteins that fight off disease. – Blood clotting agents. – Carries chemical messages (hormones) – Carries waste products Copyright © 2010 Ryan P. Murphy
  • 57. • Plasma: Fluid of blood, 90% water, 10% sugars, fats, salts, gases, and proteins. – Controls amount of water in blood. – Has antibody proteins that fight off disease. – Blood clotting agents. – Carries chemical messages (hormones). – Carries waste products Copyright © 2010 Ryan P. Murphy
  • 58. • Plasma: Fluid of blood, 90% water, 10% sugars, fats, salts, gases, and proteins. – Controls amount of water in blood. – Has antibody proteins that fight off disease. – Blood clotting agents. – Carries chemical messages (hormones). – Carries waste products. Copyright © 2010 Ryan P. Murphy
  • 59. • Activity! Blood Soup. – Add 150 ml of water and 50 ml of sugar or corn syrup to a clear plastic Zip-Lock Bag and seal it. – Record 55% plasma in Sharpie Marker on the outside of the bag. 55% Plasma Copyright © 2010 Ryan P. Murphy
  • 60.  Red Blood Cells: Produced in bone marrow, no nucleus in cell (mature cell), delivers oxygen to cells, carries away CO2. Copyright © 2010 Ryan P. Murphy
  • 61. • Red Blood Cells: Produced in bone marrow, no nucleus in cell (mature cell), delivers oxygen to cells, carries away CO2. – Hemoglobin: Protein in blood that helps blood bind with oxygen and carbon dioxide. Copyright © 2010 Ryan P. Murphy
  • 62. • Please sketch the unique shape of the red blood cell in your journal. Copyright © 2010 Ryan P. Murphy
  • 63. • Please sketch the unique shape of the red blood cell in your journal. Shape allows the cell to bend and squeeze through tight places. Mature RBC has no nucleus which allows more room for important gases and hemoglobin. 120 day life span and then destroyed in spleen and liver Most numerous cell in body. 5 million RBC in one drop of blood. Shape allows the maximum amount of surface area for gas exchange. Copyright © 2010 Ryan P. Murphy
  • 64. • Please sketch the unique shape of the red blood cell in your journal. Shape allows the cell to bend and squeeze through tight places. Mature RBC has no nucleus which allows more room for important gases and hemoglobin. 120 day life span and then destroyed in spleen Most numerous cell in body. 5 million RBC in one drop of blood. Shape allows the maximum amount of surface area for gas exchange. Copyright © 2010 Ryan P. Murphy
  • 65. • Please sketch the unique shape of the red blood cell in your journal. Shape allows the cell to bend and squeeze through tight places. Mature RBC has no nucleus which allows more room for important gases and hemoglobin. 120 day life span and then destroyed in spleen Most numerous cell in body. 5 million RBC in one drop of blood. Shape allows the maximum amount of surface area for gas exchange. Copyright © 2010 Ryan P. Murphy
  • 66. • Please sketch the unique shape of the red blood cell in your journal. Shape allows the cell to bend and squeeze through tight places. Mature RBC has no nucleus which allows more room for important gases and hemoglobin. 120 day life span and then destroyed in spleen Most numerous cell in body. 5 million RBC in one drop of blood. Shape allows the maximum amount of surface area for gas exchange. Copyright © 2010 Ryan P. Murphy
  • 67. • Please sketch the unique shape of the red blood cell in your journal. Shape allows the cell to bend and squeeze through tight places. Mature RBC has no nucleus which allows more room for important gases and hemoglobin. 120 day life span and then destroyed in spleen Most numerous cell in body. 5 million RBC in one drop of blood. Shape allows the maximum amount of surface area for gas exchange. Copyright © 2010 Ryan P. Murphy
  • 68. • Please sketch the unique shape of the red blood cell in your journal. Shape allows the cell to bend and squeeze through tight places. Mature RBC has no nucleus which allows more room for important gases and hemoglobin. 120 day life span and then destroyed in spleen Most numerous cell in body. 5 million RBC in one drop of blood. Shape allows the maximum amount of surface area for gas exchange. Copyright © 2010 Ryan P. Murphy
  • 69. • Please sketch the unique shape of the red blood cell in your journal. Shape allows the cell to bend and squeeze through tight places. Mature RBC has no nucleus which allows more room for important gases and hemoglobin. 120 day life span and then destroyed in spleen Most numerous cell in body. 5 million RBC in one drop of blood. Shape allows the maximum amount of surface area for gas exchange. Copyright © 2010 Ryan P. Murphy
  • 70. • Please sketch the unique shape of the red blood cell in your journal. Shape allows the cell to bend and squeeze through tight places. Mature RBC has no nucleus which allows more room for important gases and hemoglobin. 120 day life span and then destroyed in spleen Most numerous cell in body. 5 million RBC in one drop of blood. Shape allows the maximum amount of surface area for gas exchange. Copyright © 2010 Ryan P. Murphy
  • 71. • Please sketch the unique shape of the red blood cell in your journal. Shape allows the cell to bend and squeeze through tight places. Mature RBC has no nucleus which allows more room for important gases and hemoglobin. 120 day life span and then destroyed in spleen Most numerous cell in body. 5 million RBC in one drop of blood. Shape allows the maximum amount of surface area for gas exchange. Copyright © 2010 Ryan P. Murphy
  • 72. • Please sketch the unique shape of the red blood cell in your journal. Shape allows the cell to bend and squeeze through tight places. Mature RBC has no nucleus which allows more room for important gases and hemoglobin. 120 day life span and then destroyed in spleen Most numerous cell in body. 5 million RBC in one drop of blood. Shape allows the maximum amount of surface area for gas exchange. Copyright © 2010 Ryan P. Murphy
  • 73. • Please sketch the unique shape of the red blood cell in your journal. Shape allows the cell to bend and squeeze through tight places. Mature RBC has no nucleus which allows more room for important gases and hemoglobin. 120 day life span and then destroyed in spleen Most numerous cell in body. 5 million RBC in one drop of blood. Shape allows the maximum amount of surface area for gas exchange. Copyright © 2010 Ryan P. Murphy
  • 74. • Please sketch the unique shape of the red blood cell in your journal. Shape allows the cell to bend and squeeze through tight places. Mature RBC has no nucleus which allows more room for important gases and hemoglobin. 120 day life span and then destroyed in spleen Most numerous cell in body. 5 million RBC in one drop of blood. Shape allows the maximum amount of surface area for gas exchange. Copyright © 2010 Ryan P. Murphy
  • 75. • Activity! Making Blood Soup – Add several (100 + Red Hot candies or Red Tic- Tac’s or other small Red candy in the relative shape of a disc, that won’t dissolve quickly) into the Zip- Lock bag and seal it. – Record 45% RBC’s on the bag in black sharpie. 55% plasma 45% RBC’s Copyright © 2010 Ryan P. Murphy
  • 76.  White Blood Cells: Circulate throughout the body providing protection against foreign organisms and matter. Copyright © 2010 Ryan P. Murphy
  • 77. • Please sketch out a white blood cell in your journal. Make twice as large as RBC. Can surround and digest foreign organisms such as viruses and bacteria. Outnumbered by RBC’s 500 to 1 Twice as large as a RBC. Has a nucleus and can live considerably longer than a RBC. They can self replicate / divide. Other WBC’s can make antibodies. Copyright © 2010 Ryan P. Murphy
  • 78. • Please sketch out a white blood cell in your journal. Make twice as large as RBC. Can surround and digest foreign organisms such as viruses and bacteria. Outnumbered by RBC’s 500 to 1 Twice as large as a RBC. Has a nucleus and can live considerably longer than a RBC. They can self replicate / divide. Other WBC’s can make antibodies. Copyright © 2010 Ryan P. Murphy
  • 79. • Please sketch out a white blood cell in your journal. Make twice as large as RBC. Can surround and digest foreign organisms such as viruses and bacteria. Outnumbered by RBC’s 500 to 1 Twice as large as a RBC. Has a nucleus and can live considerably longer than a RBC. They can self replicate / divide. Other WBC’s can make antibodies. Copyright © 2010 Ryan P. Murphy
  • 80. • Please sketch out a white blood cell in your journal. Make twice as large as RBC. Can surround and digest foreign organisms such as viruses and bacteria. Outnumbered by RBC’s 500 to 1 Twice as large as a RBC. Has a nucleus and can live considerably longer than a RBC. They can self replicate / divide. Other WBC’s can make antibodies. Copyright © 2010 Ryan P. Murphy
  • 81. • Please sketch out a white blood cell in your journal. Make twice as large as RBC. Can surround and digest foreign organisms such as viruses and bacteria. Outnumbered by RBC’s 500 to 1 Twice as large as a RBC. Has a nucleus and can live considerably longer than a RBC. They can self replicate / divide. Other WBC’s can make antibodies. Copyright © 2010 Ryan P. Murphy
  • 82. • Please sketch out a white blood cell in your journal. Make twice as large as RBC. Can surround and digest foreign organisms such as viruses and bacteria. Outnumbered by RBC’s 500 to 1 Twice as large as a RBC. Has a nucleus and can live considerably longer than a RBC. They can self replicate / divide. Other WBC’s can make antibodies. Copyright © 2010 Ryan P. Murphy
  • 83. • Please sketch out a white blood cell in your journal. Make twice as large as RBC. Can surround and digest foreign organisms such as viruses and bacteria. Outnumbered by RBC’s 500 to 1 Twice as large as a RBC. Has a nucleus and can live considerably longer than a RBC. They can self replicate / divide. Other WBC’s can make antibodies. Copyright © 2010 Ryan P. Murphy
  • 84. • Please sketch out a white blood cell in your journal. Make twice as large as RBC. Can surround and digest foreign organisms such as viruses and bacteria. Outnumbered by RBC’s 500 to 1 Twice as large as a RBC. Has a nucleus and can live considerably longer than a RBC. They can self replicate / divide. Other WBC’s can make antibodies. Copyright © 2010 Ryan P. Murphy
  • 85. • Please sketch out a white blood cell in your journal. Make twice as large as RBC. Can surround and digest foreign organisms such as viruses and bacteria. Outnumbered by RBC’s 500 to 1 Twice as large as a RBC. Has a nucleus and can live considerably longer than a RBC. They can self replicate / divide. Other WBC’s can make antibodies. Copyright © 2010 Ryan P. Murphy
  • 86. • Activity! Blood Soup. – Add a few mini- marshmallows to the clear plastic Zip-Lock Bag and seal it. – Record <1% WBC’s on the bag in black Sharpie Marker. 100 ml Plasma 55% Plasma 45% RBC’s <1% WBC’s Copyright © 2010 Ryan P. Murphy
  • 87.  Platelets: Irregularly shaped bodies with sticky surfaces that form clots to stop bleeding. Copyright © 2010 Ryan P. Murphy
  • 88. • Please sketch a platelet below. . Copyright © 2010 Ryan P. Murphy
  • 89. • Please sketch a platelet below. Only lives for 5-9 days. Copyright © 2010 Ryan P. Murphy
  • 90. • Please sketch a platelet below. Prevents blood loss and allows homeostasis. Only lives for 5-9 days. Copyright © 2010 Ryan P. Murphy
  • 91. • Please sketch a platelet below. Prevents blood loss and allows homeostasis. Only lives for 5-9 days. Platelets can sense air and begin clotting a cut very quickly. Copyright © 2010 Ryan P. Murphy
  • 92. • Please sketch a platelet below. Prevents blood loss and allows homeostasis. Only lives for 5-9 days. Platelets can sense air and begin clotting a cut very quickly. Clots can be very dangerous if they block a blood vessel such as those in your brain (stroke). Copyright © 2010 Ryan P. Murphy
  • 93. • Please sketch a platelet below. Prevents blood loss and allows homeostasis. Not cells but tiny fragments of other cells. Only lives for 5-9 days. Platelets can sense air and begin clotting a cut very quickly. Clots can be very dangerous if they block a blood vessel such as those in your brain (stroke). Copyright © 2010 Ryan P. Murphy
  • 94. • Activity! Blood Soup. – Add a few Rice Krispies to the soup. – Record <1% Platelets on the bag in black Sharpie Marker. 100 ml Plasma 55% Plasma 45% RBC’s <1% WBC’s <1% Platelets Copyright © 2010 Ryan P. Murphy
  • 95. • Activity! Blood Soup. – Add one of the following blood types in huge visible Sharpie Marker to the bag. – A+, A-, B+, B-, AB+, AB-, O+, O- 100 ml Plasma 55% Plasma 45% RBC’s <1% WBC’s <1% Platelets AB+ Copyright © 2010 Ryan P. Murphy
  • 96. • Blood Soup! – Record a quick picture of your blood soup with the stat sheet on the front. – Teacher can add a few drops of red food coloring to taste. – Students can divide equally into small cups and enjoy (Optional). 55% Plasma 45% RBC’s <1% WBC’s <1% Platelets AB+ Copyright © 2010 Ryan P. Murphy
  • 97. • Video Song Link! Blood • http://www.youtube.com/watch?v=j3HDrif RENE
  • 98. • Try and guess the mystery picture beneath the boxes. – Raise your hand when you think you know. You only get one guess. Copyright © 2010 Ryan P. Murphy
  • 99. Copyright © 2010 Ryan P. Murphy
  • 100.
  • 101.
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  • 103.
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  • 108.
  • 109. • You can now complete parts to this page in your bundled homework.
  • 110.
  • 111.
  • 112.
  • 113.
  • 114.
  • 115. • Can you freely exchange blood from one person to another? Copyright © 2010 Ryan P. Murphy
  • 116. • Answer: Yes and No. Copyright © 2010 Ryan P. Murphy
  • 117. • Answer: Yes and No. For many years, blood transfusions were unsuccessful leading to horrible clotting and death. Copyright © 2010 Ryan P. Murphy
  • 118. • Answer: Yes and No. For many years, blood transfusions were unsuccessful leading to horrible clotting and death. American scientist Karl Landsteiner helped the world to understand the science of blood groups which has lead to safer blood transfusions. Copyright © 2010 Ryan P. Murphy
  • 119. • If you are given the wrong blood, your body attacks it as if it is a foreign invader. The differences in human blood are due to the presence or absence of certain protein molecules called antigens and antibodies. The antigens are located on the surface of the red blood cells and the antibodies are in the blood plasma. Individuals have different types and combinations of these molecules passed to you by your parents. Copyright © 2010 Ryan P. Murphy
  • 120. • If you are given the wrong blood, your body attacks it as if it is a foreign invader. The differences in human blood are due to the presence or absence of certain protein molecules called antigens and antibodies. The antigens are located on the surface of the red blood cells and the antibodies are in the blood plasma. Individuals have different types and combinations of these molecules passed to you by your parents. Copyright © 2010 Ryan P. Murphy
  • 121. • If you are given the wrong blood, your body attacks it as if it is a foreign invader. The differences in human blood are due to the presence or absence of certain protein molecules called antigens and antibodies. The antigens are located on the surface of the red blood cells and the antibodies are in the blood plasma. Individuals have different types and combinations of these molecules passed to you by your parents. Copyright © 2010 Ryan P. Murphy
  • 122. • If you are given the wrong blood, your body attacks it as if it is a foreign invader. The differences in human blood are due to the presence or absence of certain protein molecules called antigens and antibodies. The antigens are located on the surface of the red blood cells and the antibodies are in the blood plasma. Individuals have different types and combinations of these molecules passed to you by your parents. Copyright © 2010 Ryan P. Murphy
  • 123. • Antibodies clinging to a virus. They will prevent the virus from infecting a cell. Copyright © 2010 Ryan P. Murphy
  • 124. • Antigen: A substance that when introduced into the body stimulates the production of an antibody. Copyright © 2010 Ryan P. Murphy
  • 125. • Antigen: A substance that when introduced into the body stimulates the production of an antibody. Invading Blood Copyright © 2010 Ryan P. Murphy
  • 126. • Antigen: A substance that when introduced into the body stimulates the production of an antibody. • Antibody: A blood protein produced in response to and counteracting a specific antigen. Invading Blood Copyright © 2010 Ryan P. Murphy
  • 127. • Antigen: A substance that when introduced into the body stimulates the production of an antibody. • Antibody: A blood protein produced in response to and counteracting a specific antigen. Invading Blood Copyright © 2010 Ryan P. Murphy
  • 128. • Antigen: A substance that when introduced into the body stimulates the production of an antibody. • Antibody: A blood protein produced in response to and counteracting a specific antigen. Invading Blood Copyright © 2010 Ryan P. Murphy
  • 129. • Antigen: A substance that when introduced into the body stimulates the production of an antibody. • Antibody: A blood protein produced in response to and counteracting a specific antigen. Invading Blood Copyright © 2010 Ryan P. Murphy
  • 130. • Antigen: A substance that when introduced into the body stimulates the production of an antibody. • Antibody: A blood protein produced in response to and counteracting a specific antigen. Invading Blood Copyright © 2010 Ryan P. Murphy
  • 131. • Antigen: A substance that when introduced into the body stimulates the production of an antibody. • Antibody: A blood protein produced in response to and counteracting a specific antigen. Invading Blood Causes clotting in incorrect blood transfusions Copyright © 2010 Ryan P. Murphy
  • 132. • In this blood, the antigen on the surface of the red blood cell does not bind with the antigen in the plasma Normal Blood Copyright © 2010 Ryan P. Murphy
  • 133. • In this blood, the antigen on the surface of the red blood cell does not bind with the antigen in the plasma Normal Blood Copyright © 2010 Ryan P. Murphy
  • 134. • In this blood, the antigen on the surface of the red blood cell does not bind with the antigen in the plasma Normal Blood Copyright © 2010 Ryan P. Murphy
  • 135. • In this blood, the antigen on the surface of the red blood cell does not bind with the antigen in the plasma Normal Blood Copyright © 2010 Ryan P. Murphy
  • 136. • In this blood, the antigen on the surface of the red blood cell does not bind with the antigen in the plasma Normal Blood Copyright © 2010 Ryan P. Murphy
  • 137. • In this blood, the antigen on the surface of the red blood cell does not bind with the antigen in the plasma Normal Blood Copyright © 2010 Ryan P. Murphy
  • 138. • In this blood, the antigen on the surface of the red blood cell does not bind with the antigen in the plasma Normal Blood Copyright © 2010 Ryan P. Murphy
  • 139. • In this blood, the antigen on the surface of the red blood cell does not bind with the antigen in the plasma Normal Blood Copyright © 2010 Ryan P. Murphy
  • 140. • Please sketch the following in your journal. Copyright © 2010 Ryan P. Murphy
  • 141. Blood Groups Copyright © 2010 Ryan P. Murphy
  • 142. Blood Groups A Copyright © 2010 Ryan P. Murphy
  • 143. Blood Groups A B Copyright © 2010 Ryan P. Murphy
  • 144. Blood Groups A B AB Copyright © 2010 Ryan P. Murphy
  • 145. Blood Groups A B AB O Copyright © 2010 Ryan P. Murphy
  • 146. Blood Groups A B AB O Copyright © 2010 Ryan P. Murphy
  • 147. Blood Groups A B AB O Antibody No reaction to antibodies B Antigen on surface of cell, and A Antibody Both A and B antigens on the surface of your red blood cells and no A or B antibodies at all in your blood plasma. Antibody Copyright © 2010 Ryan P. Murphy
  • 148. Blood Groups A B AB O No reaction to antibodies B Antigen on surface of cell, and A Antibody Both A and B antigens on the surface of your red blood cells and no A or B antibodies at all in your blood plasma. Copyright © 2010 Ryan P. Murphy
  • 149. Blood Groups A B AB O Antibody No reaction to antibodies B Antigen on surface of cell, and A Antibody Both A and B antigens on the surface of your red blood cells and no A or B antibodies at all in your blood plasma. Copyright © 2010 Ryan P. Murphy
  • 150. Blood Groups A B AB O Antibody No reaction to antibodies B Antigen on surface of cell, and A Antibody Both A and B antigens on the surface of your red blood cells and no A or B antibodies at all in your blood plasma. Copyright © 2010 Ryan P. Murphy
  • 151. Blood Groups A B AB O Antibody No reaction to antibodies B Antigen on surface of cell, and A Antibody Both A and B antigens on the surface of your red blood cells and no A or B antibodies at all in your blood plasma. Antibody Copyright © 2010 Ryan P. Murphy
  • 152. Blood Groups A B AB O A Antibody No reaction to antibodies B Antigen on surface of cell, and A Antibody Both A and B antigens on the surface of your red blood cells and no A or B antibodies at all in your blood plasma. Antibody Copyright © 2010 Ryan P. Murphy
  • 153. Blood Groups A B AB O A Antigen Antibody No reaction to antibodies B Antigen on surface of cell, and A Antibody Both A and B antigens on the surface of your red blood cells and no A or B antibodies at all in your blood plasma. Antibody Copyright © 2010 Ryan P. Murphy
  • 154. Blood Groups A B AB O A Antigen Antibody No reaction to antibodies B Antigen on surface of cell, and A Antibody Both A and B antigens on the surface of your red blood cells and no A or B antibodies at all in your blood plasma. Antibody Copyright © 2010 Ryan P. Murphy
  • 155. Blood Groups A B AB O A Antigen B Antigen Antibody No reaction to antibodies B Antigen on surface of cell, and A Antibody Both A and B antigens on the surface of your red blood cells and no A or B antibodies at all in your blood plasma. Antibody Copyright © 2010 Ryan P. Murphy
  • 156. • Antigen: A substance that when introduced into the body stimulates the production of an antibody. • Antibody: A blood protein produced in response to and counteracting a specific antigen. Copyright © 2010 Ryan P. Murphy
  • 157. • Antigen: A substance that when introduced into the body stimulates the production of an antibody. • Antibody: A blood protein produced in response to and counteracting a specific antigen. Copyright © 2010 Ryan P. Murphy
  • 158. • Antigen: A substance that when introduced into the body stimulates the production of an antibody. • Antibody: A blood protein produced in response to and counteracting a specific antigen. Copyright © 2010 Ryan P. Murphy
  • 159. • Antigen: A substance that when introduced into the body stimulates the production of an antibody. • Antibody: A blood protein produced in response to and counteracting a specific antigen. Found in plasma of blood. Copyright © 2010 Ryan P. Murphy
  • 160. Blood Groups A B AB O No reaction to antibodies A Antigen on surface of cell, and B Antibody B Antigen on surface of cell, and A Antibody Both A and B antigens on the surface of your red blood cells and no A or B antibodies at all in your blood plasma. Copyright © 2010 Ryan P. Murphy
  • 161. Blood Groups A B AB O No reaction to antibodies A Antigen on surface of cell, and B Antibody B Antigen on surface of cell, and A Antibody Both A and B antigens on the surface of your red blood cells and no A or B antibodies at all in your blood plasma. Copyright © 2010 Ryan P. Murphy
  • 162. Blood Groups A B AB O No reaction to antibodies A Antigen on surface of cell, and B Antibody B Antigen on surface of cell, and A Antibody Both A and B antigens on the surface of your red blood cells and no A or B antibodies at all in your blood plasma. Copyright © 2010 Ryan P. Murphy
  • 163. Blood Groups A B AB O A Antigen on surface of cell, and B Antibody Copyright © 2010 Ryan P. Murphy
  • 164. Blood Groups A B AB O A Antigen on surface of cell, and B Antibody Copyright © 2010 Ryan P. Murphy
  • 165. Blood Groups A B AB O A Antigen on surface of cell, and B Antibody Copyright © 2010 Ryan P. Murphy
  • 166. Blood Groups A B AB O A Antigen on surface of cell, and B Antibody in plasma Copyright © 2010 Ryan P. Murphy
  • 167. Blood Groups A B AB O A Antigen on surface of cell, and B Antibody in plasma Copyright © 2010 Ryan P. Murphy
  • 168. Blood Groups A B AB O A Antigen on surface of cell, and B Antibody in plasma Copyright © 2010 Ryan P. Murphy
  • 169. Blood Groups A B AB O A Antigen on surface of cell, and B Antibody in plasma Copyright © 2010 Ryan P. Murphy
  • 170. Blood Groups A B AB O A Antigen on surface of cell, and B Antibody in plasma Copyright © 2010 Ryan P. Murphy
  • 171. Blood Groups A B AB O A Antigen on surface of cell, and B Antibody in plasma Copyright © 2010 Ryan P. Murphy
  • 172. Blood Groups A B AB O A Antigen on surface of cell, and B Antibody in plasma Copyright © 2010 Ryan P. Murphy
  • 173. Blood Groups A B AB O A Antigen on surface of cell, and B Antibody in plasma Copyright © 2010 Ryan P. Murphy
  • 174. Blood Groups A B AB O A Antigen on surface of cell, and B Antibody in plasma Copyright © 2010 Ryan P. Murphy
  • 175. Blood Groups A B AB O A Antigen on surface of cell, and B Antibody in plasma Copyright © 2010 Ryan P. Murphy
  • 176. Blood Groups A B AB O A Antigen on surface of cell, and B Antibody in plasma B Antigen on surface of cell, and A Antibody in plasma Copyright © 2010 Ryan P. Murphy
  • 177. Blood Groups A B AB O A Antigen on surface of cell, and B Antibody in plasma B Antigen on surface of cell, and A Antibody in plasma Copyright © 2010 Ryan P. Murphy
  • 178. Blood Groups A B AB O A Antigen on surface of cell, and B Antibody in plasma B Antigen on surface of cell, and A Antibody in plasma Copyright © 2010 Ryan P. Murphy
  • 179. Blood Groups A B AB O A Antigen on surface of cell, and B Antibody in plasma B Antigen on surface of cell, and A Antibody in plasma Both A and B antigens on the surface of your red blood cells and no A or B antibodies at all in your blood plasma. Copyright © 2010 Ryan P. Murphy
  • 180. Blood Groups A B AB O No Active Antigens A Antigen on surface of cell, and B Antibody in plasma B Antigen on surface of cell, and A Antibody in plasma Both A and B antigens on the surface of your red blood cells and no A or B antibodies at all in your blood plasma. Copyright © 2010 Ryan P. Murphy
  • 181. • Name the correct blood type beneath the box. Copyright © 2010 Ryan P. Murphy
  • 182. • Name the correct blood type beneath the box. Copyright © 2010 Ryan P. Murphy
  • 183. • Name the correct blood type beneath the box. Copyright © 2010 Ryan P. Murphy
  • 184. • Name the correct blood type beneath the box. Copyright © 2010 Ryan P. Murphy
  • 185. • Name the correct blood type beneath the box. Copyright © 2010 Ryan P. Murphy
  • 186. • Name the correct blood type beneath the box. Copyright © 2010 Ryan P. Murphy
  • 187. • Name the correct blood type beneath the box. Copyright © 2010 Ryan P. Murphy
  • 188. • Name the correct blood type beneath the box. Copyright © 2010 Ryan P. Murphy
  • 189. • Name the correct blood type beneath the box. Copyright © 2010 Ryan P. Murphy
  • 190. “I hate routines.” Copyright © 2010 Ryan P. Murphy
  • 191. • Name the correct blood type beneath the box. Copyright © 2010 Ryan P. Murphy
  • 192. • Name the correct blood type beneath the box. Copyright © 2010 Ryan P. Murphy
  • 193. • Name the correct blood type beneath the box. Copyright © 2010 Ryan P. Murphy
  • 194. • Name the correct blood type beneath the box. Copyright © 2010 Ryan P. Murphy
  • 195. • Name the correct blood type beneath the box. Copyright © 2010 Ryan P. Murphy
  • 196. • Name the correct blood type beneath the box. Copyright © 2010 Ryan P. Murphy
  • 197. • Name the correct blood type beneath the box. Copyright © 2010 Ryan P. Murphy
  • 198. • Name the correct blood type beneath the box. Copyright © 2010 Ryan P. Murphy
  • 199. • Name the correct blood type beneath the box. Copyright © 2010 Ryan P. Murphy
  • 201. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 202. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 203. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 204. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 205. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 206. “Quick, we need a transfusion.”
  • 208. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 209. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 210. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 211. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy Type O+ blood contains no antigens therefore if it receives blood from and A, B, or AB persons the body will make antibodies against it and cause a Hemolytic condition.
  • 212. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 213. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 214. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 215. • Will the boxes above and below = safe transfusion 1 2 O- can only accept O- blood Copyright © 2010 Ryan P. Murphy
  • 216. Copyright © 2010 Ryan P. Murphy
  • 217. O-, O+ Copyright © 2010 Ryan P. Murphy
  • 218. O-, O+ A+/- Copyright © 2010 Ryan P. Murphy
  • 219. O-, O+ A+/- AB+/AB- Copyright © 2010 Ryan P. Murphy
  • 220. O-, O+ A+/- AB+/AB- B+/ B- Copyright © 2010 Ryan P. Murphy
  • 221. O-, O+ A+/- AB+/AB- B+/ B- O- Negative is the universal donor. Copyright © 2010 Ryan P. Murphy
  • 222. “It’s too late, look at all that fluff.” Copyright © 2010 Ryan P. Murphy
  • 223. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 224. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 225. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 226. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 227. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 229.
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  • 238. • There is another antigen that some people may have. – If you have it your… Rh+ – If you don’t your… Rh- Copyright © 2010 Ryan P. Murphy
  • 239. • There is another antigen that some people may have. – If you have it your… Rh+ – If you don’t your… Rh- – Rh+ should not share blood with someone who is Rh- – Copyright © 2010 Ryan P. Murphy
  • 240. • There is another antigen that some people may have. – If you have it your… Rh+ – If you don’t your… Rh- – Rh+ should not share blood with someone who is Rh- – Rh- can give to a person who is Rh+ Copyright © 2010 Ryan P. Murphy
  • 241. • There is another antigen that some people may have. – If you have it your… Rh+ – If you don’t your… Rh- – Rh+ should not share blood with someone who is Rh- – Rh- can give to a person who is Rh+ Copyright © 2010 Ryan P. Murphy
  • 242. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 243. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 244. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 245. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 246. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 247. “Thanks for bringing up that Rh Factor thing.”
  • 248. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 249. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 250. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 251. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 252. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 254. • Circulatory System Available Sheet.
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  • 284.
  • 285.
  • 286. Learn more about blood types at… http://www.redcrossblood.org/learn-about-blood/blood- types
  • 287. • You can now complete parts to this page in your bundled homework.
  • 288. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 289. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 290. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 291. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 292. “Her blood sugar is too high.”
  • 293. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 294. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 295. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 296. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 297. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 298. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 299. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 300. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 301. • Will the boxes above and below = safe transfusion 1 2 Copyright © 2010 Ryan P. Murphy
  • 302. “This has to be the last one.”
  • 303. • Will the boxes above and below = safe transfusion 1 2
  • 304. • Will the boxes above and below = safe transfusion 1 2
  • 305. • Will the boxes above and below = safe transfusion 1 2
  • 306. • Will the boxes above and below = safe transfusion 1 2
  • 307. • Will the boxes above and below = safe transfusion 1 2
  • 308. • Will the boxes above and below = safe transfusion 1 2
  • 309. • Will the boxes above and below = safe transfusion 1 2
  • 310. • Will the boxes above and below = safe transfusion 1 2
  • 311. 1 2
  • 312. • Circulatory System Available Sheet.
  • 313. • Overview of the cardiovascular system at… – http://www.innerbody.com/image/cardov.html
  • 314. • Last Video! Blood Types, the blood supply, and donating blood. – http://www.youtube.com/watch?v=wN-- _z9eyJU Copyright © 2010 Ryan P. Murphy
  • 315.
  • 316. Bundled homework package, lesson notes, worksheets, review games, and much more on the full unit.