Animal Locomotion; or, walking, swimming, and flying: With a dissertation on aëronauticsPettigrew, James Bell
Science
Animal Locomotion; or, walking, swimming, and flying: With a dissertation on aëronautics
Pettigrew, James Bell
Aeronautics; Animal locomotion
_The Elastic Ligaments more highly differentiated in Wings which
vibrate rapidly._--The elastic ligaments of the swan are more
complicated and more liberally supplied with voluntary muscle than
those of the crane, and this is no doubt owing to the fact that the
wings of the swan are driven at a much higher speed than those of
the crane. In the snipe the wings are made to vibrate very much more
rapidly than in the swan, and, as a consequence, we find that the
fibro-elastic bands are not only greatly increased, but they are also
geared to a much greater number of voluntary muscles, all which seems
to prove that the musculo-elastic apparatus employed for recovering or
flexing the wing towards the end of the down stroke, becomes more and
more highly differentiated in proportion to the rapidity with which
the wing is moved.[92] The reason for this is obvious. If the wing is
to be worked at a higher speed, it must, as a consequence, be more
rapidly flexed and extended. The rapidity with which the wing of the
bird is extended and flexed is in some instances exceedingly great; so
great, in fact, that it escapes the eye of the ordinary observer. The
speed with which the wing darts in and out in flexion and extension
would be quite inexplicable, but for a knowledge of the fact that the
different portions of the pinion form angles with each other, these
angles being instantly increased or diminished by the slightest quiver
of the muscular and fibro-elastic systems. If we take into account the
fact that the wing of the bird is recovered or flexed by the combined
action of voluntary muscles and elastic ligaments; that it is elevated
to a considerable extent by voluntary muscular effort; and that it is
extended and depressed entirely by muscular exertion, we shall have
difficulty in avoiding the conclusion that the wing is thoroughly under
the control of the muscular system, not only in flexion and extension,
but also throughout the entire down and up strokes.
[92] A careful account of the musculo-elastic structures occurring in
the wing of the pigeon is given by Mr. Macgillivray in his History of
British Birds, pp. 37, 38.
An arrangement in every respect analogous to that described in the bird
is found in the wing of the bat, the covering or web of the wing in
this instance forming the principal elastic ligament (fig. 17, p. 36).
Public-domain text, read in full here on John Shaqi.
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