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CHSOS 404 Exam 3 with Questions & Answers

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CHSOS 404 Exam 3 with Questions & Answers

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  • September 3, 2024
  • 64
  • 2024/2025
  • Exam (elaborations)
  • Questions & answers
  • CHSOS 404
  • CHSOS 404
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KenAli
CHSOS 404 Exam 3 with Questions & Answers

capillaries - ✔✔-leaky thin walled vessels with a large cross sectional area allowing slow passage
of blood that facilitates transport and exchange

-important site of fluid balance regulation involving hydrostatic and osmotic forces

-these "starling forces" govern filtration on the arterial side and reabsorption on the venous side of the
capillary bed



fluid dynamics - ✔✔-2 opposing forces (hydrostatic and osmotic), created by 4 Starling forces,
move fluid across capillary wall

-difference between hydrostatic and interstitial fluid pressure favors filtration

-difference between osmotic pressure in plasma and interstitial fluid favor absorption



edema - ✔✔-accumulation of excess fluid in the interstitial space

-heart failure - increased hydrostatic pressure as fluid accumulates from fluid backup

-increased hydrostatic pressure - increased arterial or venous pressure or arterial dilation

-decreased osmotic pressure - decreased plasma proteins or increased permeability to proteins
-obstruction - lymph failure



lymphatics - ✔✔-major function is to maintain blood volume, but also important in defense and
fat absorption

-do so by returning excess fluid from the interstitium to the circulatory system through vein like vessels



-lymphedema - excessive accumulation of lymph due to damaged or obstructed lymph vessels -
acute lymphangitis - acute inflammation of lymph vessels; lymphadenitis if nodes involved



veins - ✔✔-return of blood to heart through low resistance blood conduits

,-help maintain BP that ensures proper venous return

-sympathetic stimulation - contracts smooth muscle to raise venous pressure

-respiratory pump - during inspiration thoracic cavity expands, reducing pressure in the right atrium at
the same time that abdominal pressure increases, helping generate a pressure gradient to drive blood
return to the heart



digitalis - ✔✔- inhibits NaK - ATPase

-which results in increased NA to exchange with Ca2

-resulting in an increase in Ca2 intracellularly



vasodilators - ✔✔-nitroglycerin

-calcium channel blockers



beta adrenergic antagonists - ✔✔-reduce contractility and heart rate

-reduce myocardial oxygen demands

-increase ventricular filling by relaxing the obstructing muscle

-thereby increasing cardia output



other drugs - ✔✔-ACE inhibitors - reduce after load through vasodilation

-diuretics - reduce fluid retention



hyperlipidemia - ✔✔-lipids, such as cholesterol and triglycerides, collect in the blood

-normally transported in the blood by proteins, which form lipoprotein

-associated risk of atherosclerosis

-underlying cause of cardiovascular disease

-lipoproteins represent the lipid and associated protein capsule and are classified according to density



-primary HLD - many have a genetic basis - defective synthesis of apoproteins, lack of appropriate of
defective receptors, or defects in how the cell handles cholesterol

,-secondary - obesity, high caloric intake, sedentary lifestyle, DM



lipoproteins - ✔✔-chylomicrons - mostly triglycerides, very little protein -
very low density lipoproteins (VLDL) - triglycerides, cholesterol, and protein
-intermediate density lipoproteins (IDL)

-low density lipoproteins (LDL) - "bad cholesterol" - main carrier of cholesterol - triglycerides,
half cholesterol, one quarter protein

-high density lipoprotein (HDL) - "good cholesterol" - 20% cholesterol, hard protein



synthesis of lipoproteins - ✔✔-synthesized in both small intestine and liver -

chylomicrons synthesized in small intestine as part of fat reabsorption process
-LDL and HDL synthesized and released by liver -LDL main carrier of cholesterol



-HDL more reverse carrier, brings cholesterol from tissues to liver, allows body to recycle cholesterol
-inverse relationship between HDL levels and development of atherosclerosis -goal of tx to maintain
and increase HDL levels



hypercholesteremia - ✔✔-increase of cholesterol in the blood, characterized by LDL 70-
130mg/dL -LDL want lower numbers, ideally less than 100 mg/dL -HDL want higher numbers, more
than 40-60mg/dL

-total cholesterol want lower numbers, less than 200mg/dL
-triglycerides want lower numbers, 10-150mg/dL



managing hypercholesteremia - ✔✔-primary target is lowering LDL

-may involve dietary and lifestyle changes, as well as pharmacologic
treatments -statins - prevent liver from manufacturing cholesterol

-bile acid sequestrates - prevent body from absorbing cholesterol

-cholesterol-absorption inhibitors - limit body's absorption of cholesterol

, -fibrates decrease synthesis of VLDL by liver - stimulate clearance of triglyceride from circulation

-nicotinic acid - blocks synthesis and release of VLDLs from liver, reduces IDL and LDL level,
increases HDL concentrations

function of the cardiovascular system - ✔✔-transport: nutrients, wastes

-communication: hormones

-immunity: lymphocytes

-coagulation: clotting factors

-body temperature

mechanism of transport: bulk flow vs diffusion



structure of the cardiovascular system - ✔✔-heart -
pump -located in thoracic cavity
-encased by fibrous sac - the pericardium

-circulatory system

-arteries

-arterioles

-capillaries

-venules

-veins

-2 circulations

-pulmonary

-systemic



heart structure - ✔✔-5 vessels

-superior and inferior vena cava

-pulmonary artery

-pulmonary vein

-aorta



-4 ventricles

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