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Respiratory NCLEX Mini-Quiz

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Practice core respiratory concepts fast.

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Respiratory NCLEX Mini-Quiz
 

Respiratory NCLEX Mini-QuizVersión en línea

Practice core respiratory concepts fast.

por Courtney P
1

What is the main function of the respiratory system?

2

Which part conducts air to the lungs?

3

Which structure prevents aspiration during swallowing?

4

Where does gas exchange primarily occur?

5

Which law explains inhalation when volume increases?

6

What muscle drives normal inspiration?

7

Which chamber is primarily involved in gas transport?

8

What percentage of O2 is carried bound to hemoglobin?

9

What condition results from reduced lung compliance?

10

Which gas stimulates breathing via central chemoreceptors?

11

What is the main function of surfactant?

12

Which term means normal breathing?

13

What controls the rate of breathing?

14

Which gas primarily drives ventilation under normal conditions?

15

Which lung volume represents the air left after a full exhale?

16

What is the primary function of the pleura?

17

Which term describes rapid breathing?

18

Which component is part of the upper airway?

19

Which receptors monitor CO2 and pH changes?

20

What term describes difficult or labored breathing?

21

Which condition reduces diffusion by thickened alveolar membranes?

22

Which structure is the primary site of gas exchange gas transfer?

23

Which term describes oxygen transport bound to hemoglobin?

24

Which airway feature warms and humidifies air?

25

Which lung structure houses alveoli?

26

Which gas diffusion occurs from alveoli to blood?

27

Which disease features chronic airway inflammation and obstruction?

28

What is the normal respiratory rate range for adults?

29

Which nerve primarily controls the diaphragm?

30

Which process describes air moving from high to low pressure?

31

What happens in hypoventilation?

32

Which mechanism helps keep lungs inflated after exhalation?

33

Which flow helps clear mucus from airways?

34

What is the primary function of goblet cells?

35

Which structure branches into the lungs from the trachea?

36

What reduces surface tension in alveoli to prevent collapse?

37

Which condition causes air in pleural space?

38

What is a hallmark of allergic asthma?

39

Which term means no breathing at all?

40

What is the primary purpose of PFTs?

41

Which term describes rapid deep breathing often during exertion?

42

Which lung zone contains higher perfusion at rest?

43

Which mechanism aids expiration during quiet breathing?

44

Which part of the airway contains cartilage rings for structure?

45

Which term means reduced blood flow to the lungs?

Feedback

Gas exchange is the primary role; filtration, digestion, and hormones are not its main tasks.

The trachea is the air-conducting tube; esophagus carries food, bronchioles and alveoli are deeper in the lungs.

The epiglottis covers the airway during swallowing; the glottis is the vocal opening, uvula and pleura have different roles.

Alveoli are the site of diffusion for O2 and CO2; airways conduct air to them.

Boyle’s Law relates volume and pressure in gases; others describe different phenomena.

The diaphragm contracts to enlarge the thoracic cavity; other muscles recruit in effortful breathing.

Oxygenated blood returns to the left atrium; other chambers serve different roles.

Most O2 is bound to hemoglobin; a portion is dissolved in plasma.

Fibrosis stiffens lungs; emphysema increases compliance; asthma/bronchitis affect airways differently.

CO2-driven drive at the medulla governs breathing; hypoxemia also influences breathing via peripheral receptors.

Surfactant lowers surface tension to prevent collapse; it doesn’t seal or fight infection on its own.

Eupnea = normal rate and depth; tachypnea is fast, bradypnea slow, apnea no breathing.

Medulla sets basic rhythm; pons modulates; others have different functions.

CO2 levels strongly influence ventilation; O2 has a lesser role unless hypoxemic.

Residual volume remains after exhalation; other volumes describe active breath components.

Pleura reduce friction and maintain lung position; surfactant is within alveoli.

Tachypnea = rapid breathing; bradypnea slow, apnea absent, hyperpnea deep/rapid during exertion.

The nose is part of the upper airway; others are lower airway structures.

Chemoreceptors sense chemical changes; other receptors respond to pressure, light, or touch.

Dyspnea is subjective work of breathing; others describe absence of breathing or normal work.

Edema thickens membranes hindering diffusion; asthma/bronchitis affect airways, pneumothorax air in pleural space.

Gas exchange occurs across the alveolar-capillary membrane; other surfaces do not directly exchange gases.

Oxyhemoglobin is O2 bound to Hb; carbon dioxide transport has other forms; some O2 is dissolved too.

Nasal mucosa conditions air; epiglottis guards the airway, others serve different roles.

Alveoli reside within the parenchyma; pleura covers the lungs; bronchi/bronchioles are airways.

O2 diffuses into capillary blood; CO2 diffuses from blood to alveoli for expulsion.

COPD involves chronic obstruction; fibrosis thickens tissue; pneumonia is infection; embolism blocks vessels.

Normal adult rate is about 12-20; the other ranges are outside typical resting values.

The phrenic nerve innervates the diaphragm; others have different functions.

Ventilation is the mechanical movement of air; diffusion/perfusion describe gas transfer and blood flow.

Hypoventilation raises CO2, causing acidosis; other options misstate gas changes.

Negative intrapleural pressure keeps lungs expanded; positive pressure would collapse them.

Cough reflex clears secretions; other reflexes protect differently.

Goblet cells produce mucus; mucociliary movement helps clear it, not goblet function alone.

Bronchi branch from the trachea to supply each lung; others are vascular or digestive structures.

Surfactant lowers surface tension; mucus and others have different roles.

Pneumothorax is air in pleural space; others involve fluid or collapsed alveoli differently.

Asthma features airway constriction; dilation is opposite; others are unrelated.

Apnea = no breathing; dyspnea is difficulty, bradypnea slow, hypercapnia high CO2.

Pulmonary function tests assess lung capacity and airflow; others evaluate different systems.

Hyperpnea is increased depth and rate with activity; hyperventilation is excessive ventilation not always with exertion.

Lower lung zones are more perfused when upright due to gravity; upper zones less perfused.

Expiration is mainly passive via elastic recoil; active muscles engage during effortful breathing.

Trachea has cartilage rings; bronchi also have cartilage but progressively less, bronchioles do not.

Pulmonary vasoconstriction reduces perfusion; vasodilation increases it; other options describe gas levels.

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