General Anatomy, Applied to Physiology and Medicine, Vol. 2 (of 3) — John Shaqi
General Anatomy, Applied to Physiology and Medicine, Vol. 2 (of 3)Bichat, Xavier
Science
General Anatomy, Applied to Physiology and Medicine, Vol. 2 (of 3)
Bichat, Xavier
Human anatomy; Human physiology
In comparing the preceding system with this, it is difficult to
understand how they can exactly correspond, how the pulmonary can
transmit not only all that passes through the general, but also all the
lymph that returns from the serous surfaces and the cellular cavities,
all the chyle which enters by digestion, &c. &c.
It seems impossible at first view, that in the balance of the
circulation, these capillaries can, constantly and regularly, keep
in equilibrium with those of the rest of the body. By reflecting a
little, however, upon the phenomena of this function, we see that the
discordance is only apparent.
Though the general capillary system is everywhere spread out, yet the
portion in which blood circulates is much more limited than at first
appears. There is a great part of the vessels of this system, in
which fluids differing from the blood move and oscillate in different
directions. Then, where the blood especially enters, as in the muscles,
the mucous surfaces, &c. a considerable portion of this fluid, its
colouring matter particularly, is in a combined state, and not in a
state of circulation. If we cut a muscle transversely in a living
animal, inspection proves clearly this phenomenon, which, joined to the
preceding, diminishes immediately more than half the blood, which at
first appears to move in the general capillary system.
Yet it is evident, that there remains much more of it constantly in
this system than in the pulmonary; to be convinced of this, it is
only necessary to cut the lungs of a living animal. From this it is
clear, that if the heart presided over the motion of the blood in the
general system, and that consequently all that is contained in it was
driven into the veins at each pulsation, the pulmonary capillaries
would be insufficient to transmit it; but there goes out only a certain
quantity, proportioned to what the lungs can receive. It is nearly
the same as when the veins are much dilated, and consequently contain
much blood; no more arrives at the heart, because, as I have said, the
velocity is then in the inverse ratio of the capacity.
Public-domain text, read in full here on John Shaqi.
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