Every-day Science: Volume 6. The Conquest of NatureWilliams, Henry Smith
Science
Every-day Science: Volume 6. The Conquest of Nature
Williams, Henry Smith
Industrial arts; Machinery
The muscular system is not only the oldest machine in existence,
but also the most complex. Moreover, it is otherwise entitled to
precedence, for even to-day, in this so-called age of steam and
electricity, the muscular system remains by far the most important of
all machines. In the United States alone there are some twenty million
horses doing work for man; and of course no machine of any sort is
ever put in motion or continues indefinitely in operation without
aid supplied by human muscles. All in all, then, it is impossible to
overestimate the importance of this muscular machine which is at once
the oldest and the most lasting of all systems of utilizing energy.
The physical laws that govern the animal machine are precisely similar
to those that are applied to other mechanisms. All the laws that have
been called to our attention must therefore be understood as applying
fully to the muscular mechanism. But in addition to these the muscular
system has certain laws or methods of action of its own, some of which
are not very clearly understood.
The prime mystery concerning the muscle is its wonderful property of
contracting. For practical purposes we may say that it has no other
property; the sole function of the muscle is to contract. It can, of
course, relax, also, to make ready for another contraction, but this
is the full extent of its activities. A microscopic examination of
the muscle shows that it is composed of minute fibres, each of which
on contraction swells up into a spindle shape. A mass of such fibres
aggregated together constitutes a muscle, and every muscle is attached
at either extremity, by means of a tendon, to a bone. Both extremities
of a muscle are never attached to the same bone--otherwise the muscle
would be absolutely useless. Usually there is only a single bone
between the two ends of a muscle, but in exceptional cases there may be
more. As a rule, the main body of a muscle lies along the bone to which
one end of it is attached, the other end of the muscle being attached
to the contiguous bone placed not far from the point. The first bone,
then, serves as a fulcrum on which the second bone moves as a lever,
and, as already pointed out, the familiar laws of the lever operate
here as fully as in the inanimate world. But a moment's reflection
will make it clear that the object effected by this mechanism is the
increase of motion with relative loss of energy. In other words, the
muscular force is applied to the short end of the lever, and a far
greater expenditure of force is required when the muscle contracts than
the power externally manifested would seem to indicate.
Public-domain text, read in full here on John Shaqi.
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