RESP 3 Flashcards

1
Q

What is the equation for partial pressure of gas?

A

Pgas = PATM x Fractional Concentration of Gas

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2
Q

What is henry’s law?

A

Partial Pressure = Concentration of Dissolved Gas / Solubility Coefficient

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3
Q

Which is more soluble: CO2 or O2?

A

CO2

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4
Q

Gas Exchange at the Respiratory
Membrane Depends on…

A
  1. Transport rate through
    the respiratory membrane.
  2. The rate of alveolar
    ventilation
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5
Q

The rate of gas diffusion across the respiratory membrane depends
on…

A
  1. Difference in Partial Pressures Across the Membrane (ΔP )
  2. Solubility of Gas in Fluid (S)
  3. Cross-Sectional Area of Membrane (A)
  4. Distance of Diffusion (d)
  5. Molecular Weight of Gas (MW)
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6
Q

A tissue with high metabolic activity will have a _____ PO2, creating a larger partial pressure gradient.

A

lower

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7
Q

What are the components of respiratory membrane?

A
  1. Surfactant
  2. Alveolar Epithelium
  3. Alveolar Basement Membrane
  4. Interstitial Space
  5. Endothelial Basement Membrane
  6. Capillary Endothelium
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8
Q

Average width of respiratory membrane is…

A

0.6 µm

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9
Q

What is diffusing capacity of the lung used for?

A

Measures respiratory membrane’s functional integrity

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10
Q

What is the ideal gas for diffusing capacity of the lung (DL)

A

carbon monoxide

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11
Q

What decreases gas diffusion?

A
  • decrease surface area
  • increased distance of the diffusion barrier
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12
Q

What can an abnormally low diffusing capacity (DL) carbon monoxide indicate?

A
  1. Thickening of the Barrier
    – Interstitial edema or fibrosis
  2. Decreased Surface Area
    – Emphysema
    – Low Cardiac Output
    – Tumors
    – Ventilation-Perfusion Mismatch
  3. Decreased Uptake
    – Anemia
    – Decreased blood volume in pulmonary capillaries
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13
Q

What is the average value of the respiratory quotient (RQ)?

A

0.8

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14
Q

What is the normal A-a gradient for a young, non-smoker?

A

5-10 mmHg

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15
Q

The A-a gradient increases by ___ mmHg for each decade

A

1

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16
Q

How easy is it to measure PAO2?

A

NOT

17
Q

PAO2 is predicted based on:

A
  1. The partial pressure of O2
    inspired
  2. The PaCO2
  3. The ratio of CO2 produced/O2
    consumed— the respiratory quotient