THE VELOCITY OF THE BLOOD varies so much in different parts of the body,
and is influenced by so many circumstances, that it can not be calculated
with any degree of accuracy. It has been estimated that a portion of the
blood will make the tour of the body in about twenty-three seconds
(FLINT), and that the entire mass passes through the heart in from one to
two minutes. [Footnote: The total amount of blood in an adult of average
weight is about eighteen pounds. Dividing this by five ounces, the
quantity discharged by the left ventricle at each systole, gives fifty-
eight pulsations as the number necessary to transmit all the blood in the
body. This, however, is an extremely unreliable basis of calculation, as
the rapidity of the blood is itself so variable. Chauvreau has shown by
experiments with his instrument that, corresponding to the first dilation
of the vessels, the blood moves with immense rapidity; following this, the
current suddenly becomes nearly arrested; this is succeeded by a second
acceleration in the current, not quite so rapid as the first; and after
this there is a gradual decline in the rapidity to the time of the next
pulsation.] (See p. 314.)
DISTRIBUTION AND REGULATION OF THE HEAT OF THE BODY.--1.
_Distribution_.--The natural temperature is not far from 98°.
[Footnote: The average temperature is, however, easily departed from.
Through some trivial cause the cooling agencies may be interfered with,
and then, the heating processes getting the superiority, a high
temperature or fever comes on. Or the reverse may ensue. In Asiatic
cholera, the constitution of the blood is so changed that its disks can no
longer carry oxygen into the system, the heat-making processes are put a
stop to, and, the temperature declining, the body becomes of a marble
coldness, characteristic of that terrible disease.--DRAPER.] This is
maintained, as we have already seen, by the action of the oxygen within
us. Each capillary tube is a tiny stove, where oxygen is combining with
the tissues of the body (see note, p. 107). Every contraction of a muscle
develops heat, the latent heat being set free by the breaking up of the
tissue. The warmth so produced is distributed by the circulation of the
blood. Thus the arteries, veins, and capillaries form a series of hot-
water pipes, through which the heated liquid is forced by a pump--the
heart--while the heat is kept up, not by a central furnace and boiler, but
by a multitude of little fires placed here and there along its course.
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