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Primary FRCA Physiology: Cardiovascular Exam | Most Recent Exam 2026 Actual Complete Real Exam 180 Questions And Correct Answers (Verified Answers) Already Graded A+ |Guaranteed Success!! Newest Exam | Just Released!! DR.LASITH RANASINGHE

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Primary FRCA Physiology: Cardiovascular Exam | Most Recent Exam 2026 Actual Complete Real Exam 180 Questions And Correct Answers (Verified Answers) Already Graded A+ |Guaranteed Success!! Newest Exam | Just Released!! DR.LASITH RANASINGHE Primary FRCA Physiology: Cardiovascular Exam | Most Recent Exam 2026 Actual Complete Real Exam 180 Questions And Correct Answers (Verified Answers) Already Graded A+ |Guaranteed Success!! Newest Exam | Just Released!! DR.LASITH RANASINGHE Primary FRCA Physiology: Cardiovascular Exam | Most Recent Exam 2026 Actual Complete Real Exam 180 Questions And Correct Answers (Verified Answers) Already Graded A+ |Guaranteed Success!! Newest Exam | Just Released!! DR.LASITH RANASINGHE Primary FRCA Physiology: Cardiovascular Exam | Most Recent Exam 2026 Actual Complete Real Exam 180 Questions And Correct Answers (Verified Answers) Already Graded A+ |Guaranteed Success!! Newest Exam | Just Released!! DR.LASITH RANASINGHE Primary FRCA Physiology: Cardiovascular Exam | Most Recent Exam 2026 Actual Complete Real Exam 180 Questions And Correct Answers (Verified Answers) Already Graded A+ |Guaranteed Success!! Newest Exam | Just Released!! DR.LASITH RANASINGHE

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Primary FRCA Physiology: Cardiovascular Exam |
Most Recent Exam 2026 Actual Complete Real
Exam 180 Questions And Correct Answers (Verified
Answers) Already Graded A+ |Guaranteed
Success!! Newest Exam | Just Released!!
DR.LASITH RANASINGHE

Review cardiovascular physiology, including cardiac output, vascular
control, blood pressure regulation, and hemodynamics’. (179 cards)


1
Q
List three adaptations that maximize exchange at capillaries.
ANSWERS:
 Low velocity (0.05-0.1 cm/s vs. 25 cm/s in the aorta)
 Large surface area (6300 m²)
 Thin walls
2
Q
List locations of fenestrated capillaries.
ANSWERS:


 Glomerulus
 Endocrine glands (e.g., thyroid, pituitary)
3

,Q
Where are discontinuous capillaries found?
ANSWERS:


In liver sinusoids.
4
Q
Which factors cause precapillary sphincters to dilate, allowing blood
flow through the capillary bed?
ANSWERS:


 Nitric oxide
 Decreased PO₂ or increased PCO₂
 Elevated temperature
 Rising K⁺
 Acidosis (e.g., lactate)
 Prostacyclin, thromboxane, and endothelins
5
Q
What colloid oncotic pressure is exerted by albumin in the
intravascular space?
ANSWERS:


26 mm Hg
NOTE: interstitial oncotic pressure is around 17 mm Hg
6

,Q
State the Starling equation for capillary fluid dynamics.
ANSWERS:


Q = Kf (Pc−Pi)−σ(πc−πi)
Where:
Q → net fluid movement
Kf (K) → filtration coefficient (permeability × surface area)
Pc / Pi → capillary & interstitial hydrostatic pressures
πc / πi → capillary & interstitial oncotic pressures
σ (s) → reflection coefficient (protein leakiness)
7
Q
What does the reflection coefficient for albumin indicate?
ANSWERS:


It indicates how much a membrane restricts the passage of albumin
across it.
8
Q
What are the rough capillary hydrostatic pressures at the arteriolar
and venous ends of a capillary?
ANSWERS:


Arteriolar: 32 mm Hg
Venous: 15 mm Hg

, NOTE: interstitial hydrostatic pressure ranges from - 2 mm Hg in the
subcutaneous tissue to +6 mm Hg in the brain.
9
Q
How much fluid is returned to the circulation by the lymphatics every
day?
ANSWERS:


2-4 L/day
NOTE: 20 L/day of fluid leaves the capillaries but about 18 L will be
reabsorbed into the capillaries (due to oncotic pressure).
10
Q
List some factors that increase capillary permeability.
ANSWERS:


 Substance P
 Histamine
 IL1, IL4 and IL6 (in inflammatory responses)
 Kinins (e.g. bradykinin)
 Accumulation of osmotically active substances in interstitial
space
 Burns
 Acute lung injury
 Reperfusion injury
11

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