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 true that in insects, unless perhaps in those which fold or
close the wing during repose, no flexion of the pinion takes place in
flight; but this is no argument against this mode of diminishing the
wing-area during the up stroke where the joints exist; and it is more
than probable that when joints are present they are added to augment
the power of the wing during its active state, _i.e._ during flight,
quite as much as to assist in arranging the pinion on the back or
side of the body when the wing is passive and the animal is reposing.
The flexion of the wing is most obvious when the bird is exerting
itself, and may be detected in birds which skim or glide when they are
rising, or when they are vigorously flapping their wings to secure the
impetus necessary to the gliding movement. It is less marked at the
elbow-joint than at the wrist; and it may be stated generally that,
as flexion _decreases_, the twisting flail-like movement of the wing
at the shoulder _increases_, and _vice versâ_,--the great difference
between sailing birds and those which do not sail amounting to this,
that in the sailing birds the wing is worked from the shoulder by
being alternately rolled on and off the wind, as in insects; whereas,
in birds which do not glide, the spiral movement travels along the
arm as in bats, and manifests itself during flexion and extension in
the bending of the joints and in the rotation of the bones of the
wing on their axes. The spiral conformation of the pinions, to which
allusion has been so frequently made, is best seen in the heavy-bodied
birds, as the turkey, capercailzie, pheasant, and partridge; and here
also the concavo-convex form of the wing is most perceptible. In the
light-bodied, ample-winged birds, the amount of twisting is diminished,
and, as a result, the wing is more or less flattened, as in the
sea-gull (fig. 103).
[Illustration:
FIG. 103.--Shows the twisted levers or screws formed by the wings of
the gull. Compare with fig. 53, p. 107; with figs. 76, 77, and 78,
p. 147, and with figs. 82 and 83, p. 158.---_Original._]
Public-domain text, read in full here on John Shaqi.
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