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
The force of the contraction of the muscles of animal life varies
much, according as it is brought into action by stimulants, or by the
cerebral action.
Every irritation made upon a muscle laid bare produces only a brisk,
rapid motion, but generally not very powerful. I have frequently
satisfied myself in my experiments that it is impossible to approximate
even at a great distance by this means, the great energy which
the brain communicates to the muscles of animal life. The organic
muscular system which stimuli directly applied put principally in
motion, never has exacerbations of force corresponding to those
which the animal contractility exhibits in so great a degree under
certain circumstances. It is then especially when the muscles move
in virtue of this last property, that the force of their contraction
must be considered. Now this contraction can, as we have seen, be
produced, 1st, by stimulating the brain in experiments; 2d, when
its excitement takes place in the natural state by the will, or by
sympathy. In the first case, the force of the contraction is never
very powerful, whatever may be the stimulant employed, either upon
the brain, or the nerves laid bare. I have uniformly observed a very
rapid convulsive motion, analogous to that produced by exciting the
muscles themselves, but never as strong as that which is the result of
vital action. Notwithstanding what some physiologists have written, we
can never by irritating the nerves of the flexors impart to them an
energy comparable to that which the will can give them. Irritate for
example the sciatic nerve in an inferior extremity which has just been
amputated, the toes will never bend with the force which they do in
certain cases in the natural state. I have twice made this experiment
in amputations performed by Desault. Unacquainted then with physiology,
I was much struck with this phenomenon.
In the cerebral excitement and in that of the spinal marrow, we cannot
so well appreciate the force of the contractions which result from
it, as when we stimulate an insulated nerve; in fact, all the system
entering then into convulsive action, the extensors destroy in part
the effort of the flexors and vice versa. The muscles simultaneously
in action, counterbalance, interfere with and injure each other. The
stimulant which gives the greatest force to the contractions, has
always appeared to me to be galvanism.
In the living state, the force of muscular contraction depends on two
causes; 1st, on the muscle; 2d, on the brain. These two causes are in a
variable proportion; it is necessary to consider them separately.
Public-domain text, read in full here on John Shaqi.
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