Physiology: The Science of the BodyMartin, Ernest G.
Science
Physiology: The Science of the Body
Martin, Ernest G.
Physiology
We showed a moment ago that the heart is really a double pump. The
relation of the two halves is shown in the diagram. One of the two
pumps, that on the right side of the heart, receives the blood from the
body at large and pumps it out into the pulmonary artery and through
the capillaries of the lungs; the pump on the left side of the heart
receives the blood from the lungs through the pulmonary vein and pumps
it out into the aorta and so through all the other capillaries of the
body. Since the circuit of the body is much more extensive than the
circuit of the lungs, the work of pumping is correspondingly greater,
and we find the left part of the heart a much more powerful pump than
the right. The heart operates as a _reciprocating pump_, by which we
mean that it alternately fills and empties. In this respect it is like
ordinary pumps except those of the rotary variety. Any reciprocating
pump must have a chamber which will fill and which can then be emptied
forcibly. In order that it shall not empty itself back through the pipe
from which it filled there must be a valve in the intake pipe which
shall close as the pump is being emptied. If, as is the case in the
heart, it is emptying itself into a system which permits backflow, there
must be another valve in the outlet pipe to prevent the fluid that has
been expelled from running back in. Each of the heart pumps consists,
then, of a chamber, which alternately fills and empties itself, and two
valves, one on the intake and one on the outflow side. In ordinary pumps
the forcible emptying is performed by a piston which moves through the
pump chamber expelling the liquid ahead of it and then has to draw back,
making room for the chamber to fill again. In the heart the forcible
emptying is accomplished by muscular action. The wall of the heart
consists of a great many muscle fibers so arranged that when they
contract they pull the walls of the heart together, making the cavity
smaller, or even obliterating it completely. The contraction of these
fibers makes up what we are familiar with as the beat of the heart. The
frequency with which they contract varies a good deal in different
individuals. The average is about seventy-two a minute; but it may be as
slow as forty-eight or fifty, or may run up to one hundred and forty or
one hundred and fifty a minute. Whatever the rate, in every case there
is an alternation of contraction and relaxation; during the relaxation
the cavity is filling with blood through the intake valve, the outflow
valve being closed, so that no blood that has once been pumped out can
rush back in again. By the contraction of the muscles the heart is
emptied, the outflow valve being open, and the intake valve being closed
to prevent an escape of blood backward into the veins through which it
flowed in. The part of the heart that carries on this active pumping
work is known as the _ventricle_; that on the right side, which receives
Public-domain text, read in full here on John Shaqi.
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