The Philosophy of Health; Volume 2 (of 2): or, an exposition of the physical and mental constitution of manSmith, Southwood
Science
The Philosophy of Health; Volume 2 (of 2): or, an exposition of the physical and mental constitution of man
Smith, Southwood
Hygiene; Physiology
yet it does not injure the body, because it does not accumulate in the
system, but is immediately expended in supplying the heat necessary
to convert the water, which is poured out upon the skin, into vapour.
In this manner that surface of the body at which, under ordinary
circumstances, a large portion of its animal heat is generated, is
the very surface at which, under extraordinary circumstances, cold is
generated, and the heat of the system positively reduced.
873. The physical process of evaporation would go on to a certain
extent, though the vital function of transudation did not exist, and
does go on in the dead body when the vital function is at an end. An
organic tissue enclosing a liquid may not be porous enough to give
passage to a single drop of liquid, and yet sufficiently porous to
admit air. In this case the air in contact with the tissue dissolves
the liquid in its interior, and carries it off in the form of invisible
vapour; hence liquids contained in organic bodies in contact with the
air diminish in quantity by evaporation. But if an animal be placed
in air saturated with moisture, and of the same temperature as its
own, the air can no longer deprive that animal of a single particle of
its moisture: evaporation from the body, in such a condition of the
air, is suppressed. On the other hand, when an animal is placed in
air saturated with moisture, and of the same temperature as its own,
so far is transudation from being suppressed, that the sweat streams
from every part of the external surface of the body. By modifying
the condition of the air, in regard to its hygrometrical state and
its temperature, the result of the physical process and of the vital
function may thus be separated from each other, and the amount of each
may be ascertained with perfect exactness. Now, by numerous experiments
on the cold-blooded vertebrata, placed under such conditions of the
air, it is found that, in these animals, perspiration by evaporation is
to that by transudation as 6 to 1. But since the human body presents to
the air an immense extent of surface over which is constantly flowing
a large proportion of the whole quantity of blood contained in the
system, the loss by the physical process compared with that by the
vital function must be still greater in man than in the cold-blooded
animal.
874. Taking together the average quantity of matter removed from
the human body by both processes, or the whole loss of weight
sustained from perspiration, on the comparison of the results of
many observations, it is estimated to vary from twenty ounces in the
twenty-four hours of the colder, to forty ounces in the warmer climates
of Europe. Keill estimated it at thirty-one ounces. In the climate of
Paris it is stated to be thirty ounces.
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