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Lectures on respiratory Lectures on respiratory physiology physiology Blood gas transport Blood gas transport
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Lectures on respiratory physiology Blood gas transport.

Dec 14, 2015

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Ciera Guess
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Page 1: Lectures on respiratory physiology Blood gas transport.

Lectures on respiratory physiologyLectures on respiratory physiology

Blood gas transportBlood gas transport

Page 2: Lectures on respiratory physiology Blood gas transport.

PO2 = 0.21 x 760 mm Hg

= 160 mm Hg

As PB = 760 mm Hg

CONCENTRATION AND PARTIAL PRESSURE

[O2] = 21 ml/dl

FO2 = 0.21

DRY AIR: 21% IS OXYGENO2 MOLECULESIN AIR

Page 3: Lectures on respiratory physiology Blood gas transport.

PO2 = 0.21 x 713 mm Hg

= 150 mm Hg

PB = 760 mm Hg

PDRY = 713 mm Hg

37oCEFFECT OF WATER VAPOR

PH2O = 47 mm Hg

Page 4: Lectures on respiratory physiology Blood gas transport.

WATER

O2 IN PHYSICAL SOLUTION

AIR: PO2 = 150 mm Hg

37oC

AIR

AFTER EQUILIBRATION,

WATER: PO2 = 150 mm Hg

AIR: [O2] = 21 ml/dl

WATER: [O2] = 0.45 ml/dl

SOLUBILITY = 0.45 / 150 = 0.003 ml/(dl.mmHg)

37oC

Page 5: Lectures on respiratory physiology Blood gas transport.

TRANSPORT OF O2 IN SOLUTION DURING EXERCISE

Solubility = 0.003 ml/(dl.mmHg)

[O2] = 0.3 ml/dl = 3 ml/liter

PO2 in arterial blood = 100 mm Hg

Cardiac output = 30 liters/min

Maximum O2 available = 90 ml/min

But O2 requirement is 3000 ml/min

Page 6: Lectures on respiratory physiology Blood gas transport.

Structure of hemoglobin

Page 7: Lectures on respiratory physiology Blood gas transport.

Normal cells Sickle cells

Page 8: Lectures on respiratory physiology Blood gas transport.

Oxygen dissociation curve

Page 9: Lectures on respiratory physiology Blood gas transport.

0 20 40 60 80 1000

20

40

60

80

100

PO2 , mm Hg

O2 - Hemoglobin Dissociation Curve

O2

SA

TU

RA

TIO

N ,

%

ARTERIAL BLOOD

VENOUS BLOOD

P50

27

Page 10: Lectures on respiratory physiology Blood gas transport.

TOTAL O2 IN BLOOD IS THE SUM

OF Hb-BOUND AND DISSOLVED O2

TOTAL [O2] = 1.39 x [Hb] x % SATURATION/100

+ 0.003 x PO2

Page 11: Lectures on respiratory physiology Blood gas transport.

TOTAL O2 IN ARTERIAL BLOOD

(1.39 x 15 x 0.97) + (0.003 x 100)

= 20.5 ml/dl

Page 12: Lectures on respiratory physiology Blood gas transport.

Effects of changing hemoglobin concentration

Page 13: Lectures on respiratory physiology Blood gas transport.

Shifting the O2 dissociation curve

Page 14: Lectures on respiratory physiology Blood gas transport.

0 10 20 30 40 50 60 70 80 90 1000

10

20

30

40

50

60

70

80

90

100

110

PARTIAL PRESSURE, mm Hg

CO-Hb DISSOCIATION CURVES

AT

UR

AT

ION

, % CO

O2

Page 15: Lectures on respiratory physiology Blood gas transport.

Effects of CO on the O2 dissociation curve

Page 16: Lectures on respiratory physiology Blood gas transport.

Carbon dioxide is carried in the blood in three forms

1. Dissolved

2. As bicarbonate

3. As carbamino compounds

Page 17: Lectures on respiratory physiology Blood gas transport.

Solubility of Oxygen 0.003 ml/(dl.mmHg)

Solubility of Carbon Dioxide 0.067 ml/(dl.mmHg)

Page 18: Lectures on respiratory physiology Blood gas transport.

Carriage of CO2 in the blood

Page 19: Lectures on respiratory physiology Blood gas transport.

CO2 + H2O H2CO3

C.A.

H2CO3 H+ + HCO3-

Formation of bicarbonate

Page 20: Lectures on respiratory physiology Blood gas transport.

Hb.NH2 + CO2 Hb.NH.COOH

Formation of carbamino compounds

Page 21: Lectures on respiratory physiology Blood gas transport.

Uptake of CO2 in systemic capillaries

Page 22: Lectures on respiratory physiology Blood gas transport.

Carriage of CO2 in the blood

Page 23: Lectures on respiratory physiology Blood gas transport.

CO2 dissociation curves

Page 24: Lectures on respiratory physiology Blood gas transport.

Comparison of O2 and CO2 dissociation curves