The Body at Work: A Treatise on the Principles of PhysiologyHill, Alex
Science
The Body at Work: A Treatise on the Principles of Physiology
Hill, Alex
Physiology
observed that it does occur; but when he is told that peas taken from
the hand of an Egyptian mummy, or seeds set free by the spades of
navvies after a far longer burial, have been found to retain their
vitality, his credulity is stretched beyond breaking-point. He cannot
imagine a change so slow as to be spread over a geological period,
still without exhaustion of all changeable compounds.
The term “respiration” has been extended until it is synonymous with
“oxidation.” At one time it was supposed that the combination of oxygen
with oxidizable substances occurred in the lungs. The lungs were the
hearth of the body, to which the blood brought fuel which burned
in the air drawn into them. When it was understood that the actual
combination of combustible material with oxygen occurs, not in the
lungs, but in the tissues, a somewhat illogical distinction was made
between “external respiration”—the combination of oxygen and blood
in the lungs—and “internal respiration”—the combination of oxygen
and tissue-substances. The terms are not comparable. The taking up of
oxygen by the hæmoglobin of blood is a different process to the union
of oxygen, after the hæmoglobin has parted with it, with the carbon,
hydrogen, and nitrogen of the tissue-substances.
The blood-stream carries both fuel and oxygen to the tissues, but the
fuel while in the blood is not in an oxidizable condition. The foods
are taken up by the tissues. They enter into combination with their
protoplasm. Oxygen also combines with tissue-substances. In proportion
as the tissues are active oxidized compounds are split off. They fall
into the lymph, whence they are absorbed by the blood. If they are
nitrogenous compounds, they are carried to the liver, formed into urea,
and passed to the kidneys for elimination. If carbonic acid, it is
carried to the lungs for exhalation. The water formed by combination of
hydrogen and oxygen may escape from the lungs, the kidneys, or the skin.
Two or three pounds of mixed foods are consumed every day. By the blood
they are carried to the tissues, whence an equivalent quantity of
waste—that is to say, oxidized—material is removed. About 1½ pounds
of oxygen is required to burn the day’s fuel.
The problems of respiration are twofold. In the first place we have to
consider the physics and chemistry of the combination of hæmoglobin
with oxygen, and of the elimination of carbonic acid from the blood in
the lungs; secondly we have to explain the transference of oxygen from
hæmoglobin to the tissues, and the reception in the blood of carbonic
acid produced by the tissues.
The apparatus by which air is brought into relation with the blood
consists of lungs and windpipe. At its upper end, where it joins the
portion of the alimentary tract common to deglutition and respiration,
the special respiratory tube is protected by the larynx. The nasal
chambers belong to the respiratory tract; the gullet, or pharynx, is
common to the two functions.
Public-domain text, read in full here on John Shaqi.
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