I have here (Fig. 1) a purposely rough, but, so far as it goes, accurate,
diagram of the structure of the heart and the course of the blood. The
heart is supposed to be divided into two portions. It would be possible,
by very careful dissection, to split the heart down the middle of a
partition, or so-called 'septum', which exists in it, and to divide it
into the two portions which you see here represented; in which case we
should have a left heart and a right heart, quite distinct from one
another. You will observe that there is a portion of each heart which is
what is called the ventricle. Now the ancients applied the term 'heart'
simply and solely to the ventricles. They did not count the rest of the
heart—what we now speak of as the 'auricles'—as any part of
the heart at all; but when they spoke of the heart they meant the left and
the right ventricles; and they described those great vessels, which we now
call the 'pulmonary veins' and the 'vena cava', as opening directly into
the heart itself.
What Erasistratus made out was that, at the roots of the aorta and the
pulmonary artery (Fig. 1) there were valves, which opened in the direction
indicated by the arrows; and, on the other hand, that at the junction of
what he called the veins with the heart there were other valves, which
also opened again in the direction indicated by the arrows. This was a
very capital discovery, because it proved that if the heart was full of
fluid, and if there were any means of causing that fluid in the ventricles
to move, then the fluid could move only in one direction; for you will
observe that, as soon as the fluid is compressed, the two valves between
the ventricles and the veins will be shut, and the fluid will be obliged
to move into the arteries; and, if it tries to get back from them into the
heart, it is prevented from doing so by the valves at the origin of the
arteries, which we now call the semilunar valves (half-moon shaped
valves); so that it is impossible, if the fluid move at all, that it
should move in any other way than from the great veins into the arteries.
Now that was a very remarkable and striking discovery.
Public-domain text, read in full here on John Shaqi.
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