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Applied Pathophysiology Exam 2 | Chapter 25 Circulation & Cardiac Output | Actual Exam Q&A Latest Update Verified and A+ Graded Answers

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Applied Pathophysiology Exam 2 | Chapter 25 Circulation & Cardiac Output | Actual Exam Q&A Latest Update Verified and A+ Graded Answers Circulation & Anatomy Systemic circulation route Left heart → aorta → systemic arteries → tissues → systemic veins → right heart Pulmonary circulation route Right heart → pulmonary arteries → lungs → pulmonary veins → left heart Which side of circulation is low pressure? Pulmonary Which vessels are capacitance vessels? Veins (thin-walled, highly compliant) Which vessels are resistance vessels? Arterioles Cardiac Cycle & Output What happens during diastole? Ventricles relax and fill; AV valves open, semilunar closed What produces the first heart sound (S1)? Closure of AV valves at onset of systole What produces the second heart sound (S2)? Closure of semilunar valves at end of systole What is cardiac output? Amount of blood pumped each minute = HR × SV Define preload Volume stretching ventricle at end-diastole (venous return) Define afterload Pressure ventricle must overcome to eject blood Define contractility Intrinsic squeezing power of the ventricle State Frank-Starling law Within limits, ↑ preload → ↑ stroke volume due to better fiber overlap What is the effect of excessive preload? Fibers overstretched → ↓ stroke volume Regulation Effect of SNS on heart ↑ HR and ↑ contractility; venoconstriction ↑ preload; arteriolar constriction ↑ afterload/BP Role of RAAS Ang II vasoconstricts & aldosterone retains Na⁺/water → ↑ preload & afterload Hemodynamics Main site of greatest resistance in systemic circulation Arterioles Typical systemic arterial pressure ~120/80 mm Hg Typical pulmonary arterial pressure ~25/8 mm Hg Laplace's Law formula Wall tension = (Pressure × radius) ÷ (2 × wall thickness) Clinical significance of Laplace's Law Larger, thinner-walled high-pressure vessels (e.g., aneurysm) more likely to rupture Chapter 26

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Applied Pathophysiology Exam 2 | Chapter 25
Circulation & Cardiac Output | Actual Exam Q&A
Latest Update Verified and A+ Graded Answers
Circulation & Anatomy

Systemic circulation route

Left heart → aorta → systemic arteries → tissues → systemic veins → right heart

Pulmonary circulation route

Right heart → pulmonary arteries → lungs → pulmonary veins → left heart

Which side of circulation is low pressure?

Pulmonary

Which vessels are capacitance vessels?

Veins (thin-walled, highly compliant)

Which vessels are resistance vessels?

Arterioles

Cardiac Cycle & Output

What happens during diastole?

Ventricles relax and fill; AV valves open, semilunar closed

What produces the first heart sound (S1)?

Closure of AV valves at onset of systole

What produces the second heart sound (S2)?

Closure of semilunar valves at end of systole

What is cardiac output?

Amount of blood pumped each minute = HR × SV

Define preload

Volume stretching ventricle at end-diastole (venous return)

, Define afterload

Pressure ventricle must overcome to eject blood

Define contractility

Intrinsic squeezing power of the ventricle

State Frank-Starling law

Within limits, ↑ preload → ↑ stroke volume due to better fiber overlap

What is the effect of excessive preload?

Fibers overstretched → ↓ stroke volume

Regulation

Effect of SNS on heart

↑ HR and ↑ contractility; venoconstriction ↑ preload; arteriolar constriction ↑ afterload/BP

Role of RAAS

Ang II vasoconstricts & aldosterone retains Na⁺/water → ↑ preload & afterload

Hemodynamics

Main site of greatest resistance in systemic circulation

Arterioles

Typical systemic arterial pressure

~120/80 mm Hg

Typical pulmonary arterial pressure

~25/8 mm Hg

Laplace's Law formula

Wall tension = (Pressure × radius) ÷ (2 × wall thickness)

Clinical significance of Laplace's Law

Larger, thinner-walled high-pressure vessels (e.g., aneurysm) more likely to rupture

Chapter 26

Lipids & Atherosclerosis

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