A Treatise on the Plague and Yellow Fever: With an Appendix, containing histories of the plague at Athens in the time of the Peloponnesian War; at Constantinople in the time of Justinian; at London in 1665; at Marseilles in 1720Tytler, James
History
A Treatise on the Plague and Yellow Fever: With an Appendix, containing histories of the plague at Athens in the time of the Peloponnesian War; at Constantinople in the time of Justinian; at London in 1665; at Marseilles in 1720
Tytler, James
Plague -- Early works to 1800; Yellow fever -- Early works to 1800
23. If we consider this matter attentively, we shall find it not a
little mysterious. Every time we breathe out the air we have sucked
into our lungs, a considerable quantity of moist vapour is breathed
out along with it; but it has been proved by undeniable experiments
that the emission of aqueous vapour from any substance cools it in
proportion to the quantity of vapour emitted. Every breath we draw,
then, cools the lungs, and consequently the blood, to a certain degree,
and, as the number of times that we breathe in a day is exceedingly
great, the cold produced by the evaporation ought to be in proportion.
But we see that, notwithstanding all this cooling, whether we breathe
cold air or hot air, the temperature of the body remains still the
same. The air then, though constantly carrying off the heat of the
body, does not cool it in the least by its action on the lungs. The
only possible way of solving this apparent contradiction is, by
supposing that the air, when acting upon the blood in the lungs, leaves
precisely as much heat as it carries off, and therefore, though we
breathe ever so long, we cannot by this means become either hotter or
colder.
24. To illustrate this subject, we might now enter into an inquiry
concerning the origin and cause of animal heat; but this will be
touched upon hereafter. We shall here only take notice that the heat of
the body is almost universally allowed to proceed from the lungs. It
has likewise been demonstrated, that the air does in fact contain an
incredible quantity of heat, even when it appears to us to be extremely
cold. A certain proportion of this heat is separated from it every time
we breathe; and if, either by the mixture of other fluids with the air
we breathe, or by any change in the organization of the body itself,
a greater or smaller proportion of heat should be communicated to the
blood, disease must ensue.
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