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GMS 6401 TEST 3 QUESTIONS AND 100% VERIFIED CORRECT ANSWERS!!

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GMS 6401 TEST 3 QUESTIONS AND 100% VERIFIED CORRECT ANSWERS!!

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GMS 6401 TEST 3 QUESTIONS AND 100%
VERIFIED CORRECT ANSWERS!!
The kidney consists of specialized vascular and tubular structures (the nephron) which
collaborate in the production of urine:

the glomerular capillary is surrounded by an epithelial structure which forms the beginning of the
tubule

A diagnostic renal clearance experiment is conducted and the following steady state (=
equilibrium) measurements are obtained on a 34 year old male subject, weighing 60 kg
(assume that the renal plasma flow (RPF) is the same as the effective renal plasma flow
(ERPF)
Urine inulin = 200 mg/100mlPlasma inulin = 4 mg/100ml.Urine flow (V) = 2ml/minUrine
PAH = 1200 mg/100mlPlasma PAH = 6 mg/100ml

GFR = 100 ml/min
200/4 x 2 ml/min = GFR = 100 ml/min


ERPF = 1200/6 x 2 ml/min = 400 ml/min


FF= GFR / ERPF = 100/400 = 0.25

Any substance which is freely filtered at the glomerulus, is reabsorbed and is not secreted,
will have a renal clearance that is: choose one best answer.

less than the clearance of inulin
- a fractional clearance (ratio of clearances of substances to inulin) < 1.0 indicates net tubular
reabsorption of freely filtered substances

An increased protein excretion (proteinuria) can indicate glomeruluar damage. Which of
the following changes are likely to cause proteinuria? Choose 1 best answer:

loss of nephrin from the epithelial slit pore diaphragm
- nephrin is an essential protein & mutations are associated with heavy proteinuria

,Maintenance of a high glomerular filtration rate (GFR) is required for optimal kidney
function. Which of the following options would be most likely to associate with a below
optimal GFR in man?

a low glomerular capillary water permeability

A selective increase in renal plasma flow (RPF) due to parallel relaxation of the afferent
and efferent arterioles leads to:

a rise in GFR with no change in filtration fraction; parallel relaxation of afferent & efferent
arterioles allows flow to increase (due to fall in renal vascular resistance) without a change in
glomerular blood pressure or filtration fraction

an increase in renal blood flow will lead to which of the following changes within the
kidney:

increased total renal oxygen consumption but little change in the renal venous oxygen content
(arterial - venous difference)
- more Na filtered so more to reabsorb so total renal oxygen consumption will increase but
because this is matched by the increased RBF, the oxygen extraction (A-V difference) across the
kidney will stay about constant

in which tubule segment is there active sodium reabsorption by the Na/K/2Cl (NKCC2)
transporter but never any water resabsorption?

thick ascending limb of the loop of Henle

the release of renin from the kidney, into the circulation is stimulated by

a fall in renal perfusion pressure is one of the volume depletion signals that stimulate renin
release

an extracellular fluid volume expansion leads to

increased right atrial pressure - signal to ANP release

a reduction in sodium excretion occurs when

, Septic shock occurs - when septic shock develops the perceived fall in circulating blood volume
leads to excessive Na retention and therefore a fall in Na excretion

an increased in renal sympathetic nerve activity will lead to which combination of changes:

increased renal renin release and a fall in renal plasma flow
- alpha adrenergic fibers stimulate renal arterioles and small arteries to vasoconstrict, lowering
renal plasma flow. beta adrenergic nerve fibers stimulate renin release from the granular cells in
afferent arteriole

an increase in antiduretic hormone (ADH) release will occur when:

plasma osmolality increases by 2% - when plasma osm increases by greater than 1% above
normal, ADH is released

a patient with nephrogenic diabetes insipidus is most likely to present with which
combination of plasma and urine osmolality

high plasma osmolality, low urine osmolality
- nephrogenic diabetes insipidus means the collecting duct cannot reaborb water, so urine is
dilute and plasma osm increases due to renal water loss

ADH (Antidiuretic hormone) stimulates the reabsorption of ___ and ___ in the kidney
collecting ducts of a normal individual. Choose 1 best answer:

water & urea

urine concentration will increase when the following events occur:

blood volume falls by 15%
- when blood volume falls by >10% ADH is released in large quanitities. water is retained and
urine concentration increases

the primary regulation of renal potassium (K) excretion occurs in which segment?

collecting duct. K is reabsorbed in proximal tubule and TALH and usually secreted in the
collecting duct (from the principal cells) unless the body needs to retain K in which case further
reabsorption can occur in the collecting duct (via intercalated cells type A)

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