A Practical Physiology: A Text-Book for Higher SchoolsBlaisdell, Albert F. (Albert Franklin)
Science
A Practical Physiology: A Text-Book for Higher Schools
Blaisdell, Albert F. (Albert Franklin)
Human physiology; Physiology
208. Capacity of the Lungs. In breathing we alternately take into and
expel from the lungs a certain quantity of air. With each quiet
inspiration about 30 cubic inches of air enter the lungs, and 30 cubic
inches pass out with each expiration. The air thus passing into and out
of the lungs is called tidal air. After an ordinary inspiration, the
lungs contain about 230 cubic inches of air. By taking a deep
inspiration, about 100 cubic inches more can be taken in. This extra
amount is called complemental air.
After an ordinary expiration, about 200 cubic inches are left in the
lungs, but by forced expiration about one-half of this may be driven
out. This is known as supplemental air. The lungs can never be entirely
emptied of air, about 75 to 100 cubic inches always remaining. This is
known as the residual air.
The air that the lungs of an adult man are capable of containing is
thus composed:
Complemental air 100 cubic inches.
Tidal 30 ” ”
Supplemental 100 ” ”
Residual 100 ” ”
Total capacity of lungs 330 ” ”
If, then, a person proceeds, after taking the deepest possible breath, to breath out as much as he can, he expels:
Complemental air 100 cubic inches.
Tidal 30 ” ”
Supplemental 100 ” ”
230
209. The Movements of Breathing. The act of breathing consists of a
series of rhythmical movements, succeeding one another in regular
order. In the first movement, inspiration, the chest rises, and there
is an inrush of fresh air; this is at once followed by expiration, the
falling of the chest walls, and the output of air. A pause now occurs,
and the same breathing movements are repeated.
The entrance and the exit of air into the respiratory passages are
accompanied with peculiar sounds which are readily heard on placing the
ear at the chest wall. These sounds are greatly modified in various
pulmonary diseases, and hence are of great value to the physician in
making a correct diagnosis.
In a healthy adult, the number of respirations should be from 16 to 18
per minute, but they vary with age, that of a newly born child being 44
for the same time. Exercise increases the number, while rest diminishes
it. In standing, the rate is more than when lying at rest. Mental
emotion and excitement quicken the rate. The number is smallest during
sleep. Disease has a notable effect upon the frequency of respirations.
In diseases involving the lungs, bronchial tubes, and the pleura, the
rate may be alarmingly increased, and the pulse is quickened in
proportion.
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