chap. 42 circulation and gas exchange ap biology mr. orndorff march 2004

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Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

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Page 1: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Chap. 42 Circulation and Gas Exchange

AP Biology

Mr. Orndorff

March 2004

Page 2: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Internal transport in Aurelia (Fig. 42.1)

Page 3: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Open and closed circulatory systems (Fig. 42.2)

Page 4: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Vertebrate circulatory systems (Fig. 42.3)

Page 5: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Mammalian cardiovascular system (Fig.

42.4)

Page 6: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Heart of mammal

(Fig. 42.5)

Page 7: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Cardiac cycle (Fig. 42.6)

Page 8: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Control of heart rhythm (Fig. 42.7)

Page 9: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Blood flow in veins (Fig. 42.9)

Page 10: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Blood flow velocity, cross-sectional area, and pressure (Fig. 42.10)

Page 11: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Blood flow in capillary beds (Fig. 42.11)

Page 12: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Movement of fluid between capillaries and interstitial fluid (Fig. 42.12)

Page 13: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Mam-mal

Blood (Fig.

42.13)

Page 14: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Differentiation of blood cells (Fig. 42.14)

Page 15: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Blood clotting (Fig. 42.15)

Page 16: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Role of gas exchange in

bioenergetics (Fig. 42.17)

Page 17: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Diversity in gill structure (Fig. 42.18)

Page 18: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Fish gill

(Fig. 42.19)

Page 19: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Countercurrent exchange (Fig. 42.20)

Page 20: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Respiratory adaptations of terrestrial animals

TRACHEAL SYSTEM• All insects.• Network of air tubes

to nearly every cell.• Body movements

compress and expand air tubes to keep system ventilated.

LUNGS• Spiders, snails, and

vertebrates.• Network of air tubes

exchange gases with capillaries in lungs.

• Closed circulatory system exchange gases with cells.

Page 21: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Negative pressure breathing (Fig. 42.23)

Page 22: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Avian respiratory system(Fig. 42.24)

Page 23: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Automatic control of breathing

(Fig. 42.25)

Page 24: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Loading and unloading of respiratory

gases (Fig. 42.26)

Page 25: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Oxygen dissociation curves for hemoglobin (Fig. 42.27)

Page 26: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Quartenary protein structure (Fig. 5.23)

Page 27: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Cooperativity (Fig. 6.17)

Page 28: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

Carbon dioxide

transport in the blood (Fig.

42.28)

Page 29: Chap. 42 Circulation and Gas Exchange AP Biology Mr. Orndorff March 2004

CO2 transport in blood

• In tissues: carbonic anhydrase

CO2 (in excess) + H2O H2CO3 H+ + HCO3 (diffuses into blood plasma)

• In lungs: carbonic anhydrase

H+ + HCO3 (in excess) H2CO3 CO2 (diffuses into lungs) + H2O