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
Every thing is irritating to the naked muscle, the air, water, neutral
salts, the acids, the alkalis, the earths, metals, animal and
vegetable substances, &c. The mere contact is sufficient to produce
contraction. Yet besides this contact, there is something also which
depends upon the nature of the stimuli, and which makes the intensity
of the contractions vary. A powder of wood, coal, metal, &c. sprinkled
upon the muscles of a frog, produce but slight motions in it; pour on
it a neutral salt in powder, the marine salt for example, immediately
irregular agitations, and a thousand different oscillations are
manifested. Each body is by its nature capable of irritating the
muscles differently, as according to individuals, ages, temperaments,
seasons, climates, &c. the muscles are capable of answering differently
to excitements made upon them.
It is not necessary to irritate the whole of a muscle to produce its
contraction; two or three fibres only being pricked bring into action
all the others. Often even when we make these experiments on a living
animal, the contraction is communicated from one muscle to another. In
general I have constantly observed that during life these experiments
are less easy, and give results much more various, as we have already
stated with regard to animal contractility. Lay bare a muscle, irritate
it at many different times; sometimes it does not give the least sign
of contractility; sometimes it moves with force; this varies from one
instant to another. Whereas if it is upon an animal recently killed
that the experiments are made, the results are always nearly the same
in a given time, with the difference however of the weakness which the
contractions have in proportion to the length of time after death. It
never happens that you see a muscle immoveable under stimuli, which is
not rare in a living animal. This essential difference which authors
have not sufficiently pointed out, and which I have frequently proved
upon different animals, arises from this, that during life, the effects
of the nervous influence counteract those of the stimuli; for example,
if an animal extends with force his thigh by the posterior muscles,
we may in vain irritate the anterior ones, we cannot produce flexion
by this irritation. The cerebral excitement in the extensors being
stronger than the mechanical excitement in the flexors, triumphs. Often
when we apply the stimulant, the brain acts with force upon the muscle,
the effect is then much superior to the excitement we have applied. We
are astonished; but the astonishment ceases, if we recollect that there
is a concurrence of two excitements, of that of the external agent and
of that of the brain. In general, those who have made experiments, have
not paid sufficient attention to this concurrence of the two forces in
a living animal.
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