17. Renal physiology Flashcards

1
Q

Distribution of Renal Blood flow Between Cortex and Medulla

A

Cortex vs medula
Percentage of renal blood flow 94
Blood flow (mL/min/g) 5.0 vs 0.03
PO2 (mm Hg) 50 vs 8
O2 extraction ratio (VO2/DO2) 0.18 vs 0.79

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2
Q

Renal vasodilator Systems

A

Prostaglandins
Kinins
Atrial natriuretic peptide
Increase RBF GFR Urine flow Na excretion

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3
Q

Vasoconstrictor
Systems (renal)

A

Sympathoadrenal system
Renin-angiotensin system
Aldosterone
Antidiuretic hormone (ADH)
Decrease RBF GFR Urine flow Na excretion

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4
Q

Where in the kidney does most of the reabsorption of water take place
Where it doesnt at all

A

Proximal tubule
Not at all in Thick ascending

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5
Q

Where does take action in the kidney…
Fusid, K sparing ADH

A

Fusid Loop of Henle
K sparing Distal tubule
ADH collecting tube

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6
Q

Osmolarity formula

A

2xNa + 2xK + BUN/2.8 + Gluc/18

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7
Q

CO to the kidneys

A

20%

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8
Q

Acute Kidney injury and MAP

A

MAP less than 55, 10 min
MAP less than 60 11-20 min

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9
Q

reason for angioedema

A

Renal kininase (inhibited by ACE inh)

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10
Q

Attenuated the
increase in serum creatinine…

A

desflurane, sevoflurane, isoflurane, and halothane

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11
Q

Kidney characteristics

A

CO 20%
VO2 7%
2 capillary beds. Vasa recta + Glomeruli

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12
Q

Kidney region more sensible for ischemia

A

the metabolically active medullary thick ascending loop of Henle

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13
Q

Adrenergic stimulation of kidneys, RBF and GFR

A

Mod increase RBF and GFR
Severe Decrease both

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14
Q

Urinary output

A

Oliguria. < 0.5, not a modifiable risk to death, good indicator for renal dysfunction

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15
Q

BUN in non kidney disease

A

Increase in Sepsis, steroids, GI bleeding
Decrease in liver disease

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16
Q

Induced hypotension and kidney

A

Fenoldopam is capable of
providing induced hypotension
without any significant decrease in RBF
Nicardipine increased creatinine clearance
Nitroglycerin decreases RBF less than sodium nitroprusside