respiratory part 2 Flashcards

1
Q

what is surface tension

A

force acting to pull liquids surface molecules together

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2
Q

what is the role of surfactants

A

surfactants reduce surface tension and less work os needed to expand the alveoli
reduce the tendency of alveolar walls to stick

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3
Q

what is long compliance

A

how easily the lungs stretch during inhalation

surface tension decreases compliance therefor surfactants increase

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4
Q

what is lung elasticity

A

the ability of the lung to return to its resting volume after stretched

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5
Q

what effect does low elasticity have

A

lungs are not able to return to resting volume once respiratory muscles relax, and therefor must actively expire

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6
Q

what is fibrotic lung disease

A

scarring of lung tissue
reduces compliance, makes inspiration difficult
must breath rapidly and shallow

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7
Q

what is emphysema

A

damage to elastic fibers, lung is less elastic
collapses more often
easily inflated but needs more energy to expire

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8
Q

what is asthma

A

inflammatory disease of respiratory airways

causes constriction of airways

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9
Q

how does diameter affect resistance

A

as diameter decrease, resistance increases

as diameter increases, resistance decreases

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10
Q

how is resistance related to pressure gradient

A

higher resistance needs a larger pressure gradient

lower resistance needs a smaller pressure gradient

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11
Q

how do parasympathetic nerve affects respiration

A

parasympathetic nerves stimulate bronchoconstriction

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12
Q

how do sympathetic nerves affect respiration

A

sympathetic nerves stimulate bronchodilaton

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13
Q

spirometer

A

measures lung capacity and volume

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14
Q

dead space (Vd)

A

air that doesn’t participate in gas exchange

  1. anatomical
  2. alveolar
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15
Q

tidal volume (Vt)

A

volume of air moved in one ventilatory cycle

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16
Q

total lung capacity equation

A

TLC = VC + RV

vital capacity + residual volume

17
Q

vital capacity equation

A

VC= Vt + IRV + ERV

tidal volume + inspiratory capacity + expiratory reserve volume

18
Q

alveolar ventilation volume equation

- volume of fresh air that enters alveoli with each respiratory cycle

A

Va=Vt-Vd
minute :
Va= f(Vt-Vd)