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
Many calculations have been made upon the waste of muscular motion,
upon the effort of a muscle which contracts, compared with the effect
that results from it. They can never be precise because the vital
forces vary to an infinite degree, because they are not the same in
two individuals and because the cerebral influence and the force of
muscular organization are never in constant proportion in the same
subject. It is a peculiarity of the vital phenomena to escape all
calculations, and to exhibit, like the forces from which they emanate,
a character of irregularity which distinguishes them essentially from
the physical phenomena. Let us conclude only from the preceding
observations, that the muscular effort carried to the highest point by
cerebral excitement, can produce astonishing effects, which suppose a
force of contraction hardly conceivable; such is the rupture of the
strong tendons, of the patella, the olecranon, &c.; such is also the
resistance often opposed to the enormous distensions that are used in
luxations, fractures, &c.
II. _Quickness of the Contractions._
The contractions should be considered under the relation of their
quickness as under that of their force.
1st. If it is by stimulants that they are produced, by laying bare a
muscle and acting directly upon it, they vary according to the state
of vitality of the muscle, and according to the body which stimulates.
In the first moments of the experiment, they succeed with rapidity and
are sometimes connected together with such quickness that the eye can
hardly follow them. As the muscle becomes weak, its contractions become
less prompt; and they cease at the end of some time. We can reanimate
them by employing a very active stimulant; the fibres finally become
insensible to this also.
2d. If it is by irritating the nerve that we make a voluntary muscle
contract, we produce a still greater quickness of contraction than by
stimulating the muscle itself. Running would be almost immeasurably
rapid, if each contraction that it requires was equal to those that we
thus obtain, especially when we act on the one hand on very sensitive
animals, and on the other with very active stimulants, galvanism
for example. Upon this subject I have made a remark, it is that the
quickness and the force of the contractions are not commonly greater if
we irritate at the same time all the nerves that go to a muscle, than
if we irritate but one.
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