Approach to Acid-Base Problems Flashcards

1
Q

outline the buffer system in the body

A

in the cells, there is a buffer system that turns acid to H2O and CO2. they fluctuate between H+ and HCO3 and Co2+H2O.

the pH is influenced by the bicarbonate concentration regulated by the kidney, and the CO2 levels

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2
Q

HCO3- regulation is done by the ___ where as the pCO2 regulation is regualted by ___

A

HCO3- regulation is done by the KIDNEY where as the pCO2 regulation is regualted by LUNG

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3
Q

Approach to identifying disorders begins with looking for a PATTERN to explain the ___

A

Approach to identifying disorders begins with looking for a PATTERN to explain the pH

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4
Q

4 parameters to look at when identifying the acid-base disorder

A

pH, HCO3, CO2, anion gap

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5
Q

Metabolic acidosis is present when pH and HCO3

  •  Metabolic alkalosis is present when pH and HCO3
  •  Respiratory acidosis is present when there is pH and pCO2

 Respiratory alkalosis is present when there is pH and  pCO2

- fill in the box: low/high

A
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6
Q

pH = 7.23 HCO3 = 16 pCO2 = 38 Anion gap = 26

Guy drank antifreeze before coming into the ER:

is this met acid, resp acid, met alk, or resp alk?

A

low pH and low HCO3 –> met acidosis

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7
Q

ratio for appropriate repsonse CO2: HCO3 to metabolic acidosis

A
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8
Q

CO2: HCO3 ratio for respiratory response to metabolic acidosis : if there is also a respiratory acidosis

A

decreased pCO2 and decrese HCO3 <1:1

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9
Q

CO2: HCO3 ratio for respiratory response to metabolic acidosis: if there is also respiratory alkalosis

A
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10
Q

CO2: HCO3 ratio for respiratory response to metabolic alkalosis, if it’s an appropriate repsonse, if it’s a respiratory alklaosis, or if it’s a respiraotry acidosis in addition to the met alkalosis.

A
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11
Q

Copy this down

A
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12
Q

acute and chronic respiratory acidosis ratios

A
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13
Q

acute and chronic respiratory alkalosis

A
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14
Q

this person drank antifreeze. is this an appropriate response to the metabolic acidosis?

pH = 7.23 HCO3 = 16 pCO2 = 38 Anion gap = 26

A
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15
Q

what is the calculation for anion gap

A

AG= Na-(Cl+HCO3)

expected value is 12+/1 2.

for every drop in serum albumin of 10, add 2.5 to AG

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16
Q

a high anion gap metabolic acidosis implies an __ ___

a normal acnion gap metabolic acidosis (NAGMA) implies a __ loss (__ or ___- gain)

A

a high anion gap metabolic acidosis implies an ACID GAIN

a normal acnion gap metabolic acidosis (NAGMA) implies a buffer loss (H+ or Cl- gain)

17
Q

general facts;

If metabolic acidosis and low HCO3-…….

 Anion gap not increased= __ __ __ __ alone
 ΔAnion Gap = ΔHCO3-= __ __ acidosis alone
 ΔAnion Gap < ΔHCO3- =__ __ gap + __ __ gap acidosis
 ΔAnion Gap > ΔHCO3- = __ __ gap + __ __

A

 Anion gap not increased= normal anion gap acidosis alone
 ΔAnion Gap = ΔHCO3-= anion gap acidosis alone
 ΔAnion Gap < ΔHCO3- =mixed anion gap + normal anion gap acidosis
 ΔAnion Gap > ΔHCO3- = mixed anion gap + metabolic alkalosis

18
Q

guy drank anti-freeze.

ph= 7.23, HCO3 = 16, AG = 26.

what all problems are there in this case?

A

low ph and low HCO3 –> metabolic acidosis

inappropriately high pCO2 –> respiratory acidosis

ΔAG (14) > ΔHCO3 (8)–> mixed anion gap and metabolic alkalosis

final list: HAG metabolic acidosis, metabolic alklosis, respiratory acidosis.