Ventilation β diffusion β transport β regulation
β Must-know
π During inspiration:
External intercostal muscle contraction contributes approximately 25% of lung volume change during quiet breathing, whereas diaphragm contraction accounts for approximately 75% of air movement.
Further detail
Inspiration expands the thorax; active expiration compresses it
π Formula β Transpulmonary pressure equals alveolar pressure minus pleural pressure: .
More negative pleural pressure β larger thoracic volume β airflow inward
β Must-know
π Formula β The pressure generated by alveolar surface tension is given by , where pressure increases as alveolar radius decreases.
Further detail
Its most important components include:
For an alveolus with an average diameter of 100 Β΅m and normal surfactant, surface-tension pressure is 0.4 kPa, whereas with pure water it is 1.8 kPa.
Air-filled lungs face surface tension; saline-filled lungs do not
β Must-know
π During normal breathing, inspiration is an active process requiring work, whereas expiration is passive and results from the elastic forces of the lungs and chest wall.
Further detail
Compliance work β tissue resistance work β airway resistance work
The four pulmonary volumes are:
Tidal volume is 500 ml, inspiratory reserve volume is 3000 ml, expiratory reserve volume is 1100 ml, and residual volume is 1200 ml.
π Formula β Inspiratory capacity equals , functional residual capacity equals , vital capacity equals , and total lung capacity equals .
TV, IRV, ERV, RV form the four volumes
π Formula β Minute alveolar ventilation equals respiratory frequency multiplied by tidal volume minus dead-space volume: .
Anatomical dead space conducts air; alveolar space exchanges gases
β Must-know
π Sympathetic stimulation through norepinephrine and epinephrine acting on beta-adrenergic receptors dilates the bronchi, whereas parasympathetic vagal acetylcholine causes mild to moderate bronchiolar constriction.
Further detail
The main resistance to airflow is located in the larger bronchi and bronchi near the trachea rather than in the terminal bronchioles, of which there are approximately 65,000.
Histamine and the slow-reacting substance of anaphylaxis released by mast cells during allergic reactions constrict bronchioles and can obstruct the airways.
Bronchial muscle contraction or mucus β increased airway resistance
Pulmonary Volumes and Capacities
| Measure | Definition or formula | Value |
|---|---|---|
| Tidal volume (TV) | Air inspired or expired in a normal breath | 500 ml |
| Inspiratory reserve volume (IRV) | Extra air inspired after a normal inspiration | 3000 ml |
| Expiratory reserve volume (ERV) | Extra air expired after a normal expiration | 1100 ml |
| Residual volume (RV) | Air remaining after maximal expiration | 1200 ml |
| Vital capacity (VC) | IRV + TV + ERV | 4600 ml |
| Total lung capacity (TLC) | VC + RV | 5800 ml |
Test your knowledge on Pulmonary Ventilation with 25 multiple-choice questions with detailed corrections.
1. What is the primary purpose of respiration in the body?
2. Which sequence best represents the major processes included in respiration?
Memorize the key concepts of Pulmonary Ventilation with 53 interactive flashcards.
What is the main purpose of respiration?
To supply tissues with O2 and remove CO2 from the organism.
What are the four components of respiration?
Pulmonary ventilation, diffusion between alveoli and blood, transport in blood and fluids, and regulation of ventilation.
What is pulmonary ventilation?
The movement of air into and out of the lungs between atmosphere and alveoli.
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