professor ganster's site · web viewany ↑ in resistance (r) will demand an ↑ in blood...

74
Text Flow: Marieb, P.Fulks 9/15 Topic: Blood Vessels Fig. 17.5

Upload: others

Post on 19-Mar-2021

1 views

Category:

Documents


0 download

TRANSCRIPT

Page 1: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Text Flow: Marieb, P.Fulks 9/15

Topic: Blood Vessels

Fig. 17.5

Page 2: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig. 18.1

Page 3: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25
Page 4: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig. 18.2

Page 5: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25
Page 6: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25
Page 7: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig. 18.1

Page 8: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig.18.3

Page 9: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig. 18.4

Page 10: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 18.1

\

Page 11: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25
Page 12: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig. 18.5

Page 13: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 18.6

Page 14: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

FIG. 18.8

The basis of varicose veins

Page 15: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig. 18.1

F= PR IF 5 liters (CO) = 100(systolic)20(resitance factor)

Page 16: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

IF R ↑ to 40 then 2.5 = 10040

So to correct body 5 lit. = 20040

Any ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow.

Fig. 18.1

Fig 18.6

Page 17: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25
Page 18: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 18.7

Page 19: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 18.1

Fig. 18.10

Page 20: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 21.25

Page 21: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 14.3

Page 22: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 18.10

Page 23: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 18.02

Page 24: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 18.11

Page 25: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 18.11

Page 26: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 18.12

Fig. 18.17

Page 27: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25
Page 28: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

FocusFig 18.1

Page 29: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

FocusFig 18.2

Fig. 18.18

Page 30: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Visuals for Labs on Arteries and Veins

Page 31: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig. 18.19

Page 32: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 18.20

Fig 18.21b

Page 33: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 18.21a

Page 34: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Activity 1: The aorta and its branches

Use your text (flowchart and anatomical views), vessel board and torso models to find:

Aorta

Ascending aorta Coronary a. R. & L. (may not be found on all small torso hearts)

Page 35: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Aortic arch Brachiocephalic trunk

R. common carotid a. R. subclavian a.

L. common carotid L. subclavian

Descending aorta Thoracic aorta portion (T-5 to T12)

Pierces diaphragm

Abdominal aorta portion Celiac trunk (locate on aorta superior to pancreas)

Branches: splenic a. (easily seen), common hepatic a. (see on board model) and L. gastric (don’t try ID)

Superior mesenteric a. R. & L. renal a. R. & L. gonadal a. Inferior mesenteric a. R. & L. common iliac a.

R. & L. internal iliac R. & L. external iliac

Fig 18.24c

Fig18.24a

Page 36: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25
Page 37: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Activity 2: Arteries of the head and neck

Using your text and the transparent skull model, find the following:

Fig 18.22b

Page 38: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 18.22a

Fig 18.22c

Page 39: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25
Page 40: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 18.22 d

Fig 18.21a

Page 41: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25
Page 42: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Activity 3: Arteries of the upper limb

Using your text and the upper limb models to find the following:

Fig 18.23b

Page 43: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig. 18.23a

Page 44: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Activity 4: Arteries of the lower limb

Using your text and the lower limb models to find the following:

Fig 18.25a

Page 45: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 18. 25.b

Fig 18.25c

Page 46: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Visuals for the Vein Lab

Page 47: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 18.26a

\

Fig 18.26b

Page 48: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Activity 1: Veins forming the superior and inferior vena cava

Page 49: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 27c

Page 50: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25
Page 51: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 18.27b

Page 52: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Selected Veins draining the abdomen and forming the inferior vena cava

Fig 18.29

Page 53: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 18.29c

Page 54: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 18.29c

Page 55: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Activity 2: Veins of the upper limbs

Fig 18.28a

Page 56: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 18.29.b

Page 57: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Activity 3: Veins of the lower limbs

Fig 18.30a

Page 58: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 18.30b

Page 59: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25
Page 60: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Pulse to be discussed in Pulse and BP lab

Fig 18.6

Page 61: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig.18.07

Page 62: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

BP to be discussed in Pulse and BP lab

Image not in text

Page 63: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

BP to be discussed in Pulse and BP lab

Image not in text

Page 64: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

BP to be discussed in Pulse and BP lab

Fig. 18.10

……… ……..

Page 65: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Fig 18.6

Page 66: Professor Ganster's site · Web viewAny ↑ in resistance (R) will demand an ↑ in blood pressure to maintain the same flow. Fig. 18.1 Fig 18.6 Fig 18.7 Fig 18.1 Fig. 18.10 Fig 21.25

Vessel cross section under the microscope

Fig 18.02