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[object Object],[object Object]
Cardiac Output ,[object Object],[object Object],[object Object],[object Object]
Cardiac output ,[object Object],[object Object],[object Object]
MEASUREMENT  OF  CARDIAC  OUTPUT 1. THE  FICK  METHOD: VO 2  = ([O 2 ] a  - [O 2 ] v ) x Flow Flow = VO 2 [O 2 ] a  - [O 2 ] v Spirometry  (250 ml/min) Arterial  Blood  (20 ml%) Pulmonary Artery Blood  (15 ml%) CARDIAC  OUTPUT PERIPHERAL BLOOD  FLOW VENOUS  RETURN PULMONARY  BLOOD  FLOW
CARDIAC  OUTPUT (Q) = VO 2 [O 2 ] a  - [O 2 ] v 250 ml/min 20 ml% - 15 ml% = = 5 L/min . Q = HR x SV . SV = Q HR . = 5 L/min 70 beats/min = 0.0714 L  or  71.4 ml CARDIAC  INDEX = Q m 2  body surface area . 5 L/min 1.6 m 2 = = 3.1 L/min/m 2
  Measurement of cardiac output 2. Indicator dilution method 3. Doppler Echocardiography
Factors Affecting Cardiac Output
Heart Rate ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Regulation of Heart Rate ,[object Object],[object Object]
Regulation of Heart Rate  ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Regulation of the Heart rate ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
[object Object],[object Object],[object Object],Basic heart rate established by pacemaker cells
Regulation of Stroke Volume ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Factors Affecting Stroke Volume ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Frank-Starling Law of the Heart ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Frank –starling curve  ,[object Object],[object Object],[object Object]
Factors influencing Venous return
Total Peripheral Resistance ( TPR) ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Contractility- Extrinsic factors influencing SV ,[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object],[object Object]
Effects of Hormones on Contractility ,[object Object],[object Object],[object Object]
Unbalanced Ventricular Output
Unbalanced Ventricular Output
Factors Involved in Regulation of Cardiac Output
RIGHT ATRIAL PRESSURE AND VENOUS RETURN Venous return RA pressure Venous return from the periphery depends on the pressure difference between the peripheral pressure and right atrial pressure. Thus as right atrial pressure (central venous pressure) rises venous return will fall Venules Right atrium 25 mm Hg  ∆P = 25 mm Hg  0 mm Hg 25 mm Hg  ∆P = 20 mm Hg  5 mm Hg
GUYTON’S ANALYSIS OF THE INTACT CIRCULATION Two relationships have been established: A rise of right atrial pressure will more effectively fill the heart in diastole, increase stroke work and thus increase flow in the circulation (assume afterload and heart rate are constant) A rise of right atrial pressure will hinder venous return and thus decrease flow in the circulation. But in the intact circulation venous return must equal cardiac output Venous return RA pressure Cardiac output RA pressure
GUYTON’S ANALYSIS OF THE INTACT CIRCULATION Thus right atrial pressure exerts conflicting effects on flow in the intact circulation. But: cardiac out put = venous return. Thus: the two curves can be superimposed to yield an equilibrium point for the circulation. Cardiac output = venous return RA pressure cardiac function curve equilibrium point vascular function curve

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Cardiovascular System5

  • 1.
  • 2.
  • 3.
  • 4. MEASUREMENT OF CARDIAC OUTPUT 1. THE FICK METHOD: VO 2 = ([O 2 ] a - [O 2 ] v ) x Flow Flow = VO 2 [O 2 ] a - [O 2 ] v Spirometry (250 ml/min) Arterial Blood (20 ml%) Pulmonary Artery Blood (15 ml%) CARDIAC OUTPUT PERIPHERAL BLOOD FLOW VENOUS RETURN PULMONARY BLOOD FLOW
  • 5. CARDIAC OUTPUT (Q) = VO 2 [O 2 ] a - [O 2 ] v 250 ml/min 20 ml% - 15 ml% = = 5 L/min . Q = HR x SV . SV = Q HR . = 5 L/min 70 beats/min = 0.0714 L or 71.4 ml CARDIAC INDEX = Q m 2 body surface area . 5 L/min 1.6 m 2 = = 3.1 L/min/m 2
  • 6. Measurement of cardiac output 2. Indicator dilution method 3. Doppler Echocardiography
  • 8.
  • 9.
  • 10.
  • 11.
  • 12.
  • 13.
  • 14.
  • 15.
  • 16.
  • 18.
  • 19.
  • 20.
  • 23. Factors Involved in Regulation of Cardiac Output
  • 24. RIGHT ATRIAL PRESSURE AND VENOUS RETURN Venous return RA pressure Venous return from the periphery depends on the pressure difference between the peripheral pressure and right atrial pressure. Thus as right atrial pressure (central venous pressure) rises venous return will fall Venules Right atrium 25 mm Hg ∆P = 25 mm Hg 0 mm Hg 25 mm Hg ∆P = 20 mm Hg 5 mm Hg
  • 25. GUYTON’S ANALYSIS OF THE INTACT CIRCULATION Two relationships have been established: A rise of right atrial pressure will more effectively fill the heart in diastole, increase stroke work and thus increase flow in the circulation (assume afterload and heart rate are constant) A rise of right atrial pressure will hinder venous return and thus decrease flow in the circulation. But in the intact circulation venous return must equal cardiac output Venous return RA pressure Cardiac output RA pressure
  • 26. GUYTON’S ANALYSIS OF THE INTACT CIRCULATION Thus right atrial pressure exerts conflicting effects on flow in the intact circulation. But: cardiac out put = venous return. Thus: the two curves can be superimposed to yield an equilibrium point for the circulation. Cardiac output = venous return RA pressure cardiac function curve equilibrium point vascular function curve