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
“It is generally through the intervention of the proper motions of
the dorsum, which are very considerable during flight, that the wings
or the elytra are moved equally and simultaneously. Thus, when it is
elevated, it carries with it the internal side of the base of the wings
with which it is articulated, from which ensues the depression of the
external side of the wing; and when it approaches the sternal portion
of the trunk, the contrary takes place. During the depression of the
wings, the dorsum is curved from before backwards, or in such a manner
that its anterior extremity is brought nearer to its posterior, that
its middle is elevated, and its lateral portions removed further from
each other. The reverse takes place in the elevation of the wings; the
anterior extremity of the dorsum being removed to a greater distance
from the posterior, its middle being depressed, and its sides brought
nearer to each other. Thus its bending in one direction produces a
diminution of its curve in the direction normally opposed to it; and
by the alternations of this motion, assisted by other means, the body
is alternately compressed and dilated, and the wings are raised and
depressed by turns.”[86]
[86] Chabrier, as rendered by E. F. Bennett, F.L.S., etc.
In the _libellulæ_ or dragon-flies, the muscles are inserted into
the roots of the wings as in the bat and bird, the only difference
being that in the latter the muscles creep along the wings to their
extremities.
In all the wings which I have examined, whether in the insect, bat,
or bird, the wings are recovered, flexed, or drawn towards the body
by the action of elastic ligaments, these structures, by their mere
contraction, causing the wings, when fully extended and presenting
their maximum of surface, to resume their position of rest, and plane
of least resistance. The principal effort required in flight would
therefore seem to be made during extension and the down stroke. The
elastic ligaments are variously formed, and the amount of contraction
which they undergo is in all cases accurately adapted to the size and
form of the wings, and the rapidity with which they are worked--the
contraction being greatest in the short-winged and heavy-bodied insects
and birds, and least in the light-bodied and ample-winged ones,
particularly in such as skim or glide. The mechanical action of the
elastic ligaments, I need scarcely remark, insures a certain period
of repose to the wings at each stroke, and this is a point of some
importance, as showing that the lengthened and laborious flights of
insects and birds are not without their stated intervals of rest.
Public-domain text, read in full here on John Shaqi.
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