The commonwealth of cells : $b Some popular essays on human physiology — John Shaqi
The commonwealth of cells : $b Some popular essays on human physiologySpurrell, H. G. F. (Herbert George Flaxman)
Science
The commonwealth of cells : $b Some popular essays on human physiology
Spurrell, H. G. F. (Herbert George Flaxman)
Human physiology
Of the first kind we need say no more. The instance of peristaltic
movement illustrates it sufficiently; so we can at once begin a more
careful examination of reflex action.
The simplest instance of reflex action may be taken from the schoolroom.
If a boy suddenly sticks a pin into an unsuspecting schoolfellow, the
latter invariably starts, and frequently lets fall an exclamation also.
In this case the presence of an injurious agency is reported to the
nearest motor centre, which is in the spinal cord, and this automatically
convulses the body, jerking the limb out of danger.
This is reflex movement; the nerve fibre, which conveys an intimation of
the injurious influence, is a prolongation, or really two prolongations,
of a spinal ganglion cell. (See Diagram 46.) The near end of this fibre,
which enters the cord, has several branches. Some run a little way up the
cord, and some a little way down, so as to communicate with several motor
cells; but one branch runs right up the cord, and sends the message on to
the brain. Our outraged schoolboy starts a fraction of a second before
he is conscious of the pain of being pricked, and this first response
is involuntary and unvarying; the sensation, however, is reported to
his brain, and the workings of that wonderful organ are less easy to
predict. It leads to his taking stock of the aggressor, on the strength
of which he decides whether it is safe to attempt a reprisal, and, if so,
in what form it will be most effective and least likely to attract the
master’s attention. This knotty point settled, the motor cells of the
brain send down messages to the motor cells of different parts of the
spinal cord, and these in turn set the necessary muscles in motion for
delivering a surreptitious kick or aiming a splash of ink, as the case
may be. This is voluntary movement.
[Illustration: DIAGRAM 46.—EVOLUTION OF A SPINAL GANGLION CELL.]
[Illustration: DIAGRAM 47.—SCHEME OF THE CENTRAL NERVOUS SYSTEM.
→ shows the path taken by an impulse in reflex action.
↣ shows the path for a voluntary action.]
The difference between reflex and voluntary movement is, as may be seen
from the above instances, very much a matter of degree; but we had better
leave a comparison between them, and any discussion as to the extent to
which the manifestations of consciousness are automatic, until we have
finished describing reflex movement, and set forth the little we know
about voluntary movement.
Time and space forbid a complete list of reflex movements. The following
are, however, a few typical examples of how the body is automatically
made to perform such acts as are necessary, and of how such as do not
require deliberation are brought about without taxing the intellect.
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