Animal Locomotion; or, walking, swimming, and flying: With a dissertation on aëronautics — John Shaqi
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 feet of the ostrich, like those of the horse and deer, are reduced
to a minimum as regards size; so that they occasion very little
friction in the act of walking and running. The foot is composed of two
jointed toes,[30] which spread out when the weight of the body comes
upon them, in such a manner as enables the bird to seize and let go
the ground with equal facility. The advantage of such an arrangement
in rapid locomotion cannot be over-estimated. The elasticity and
flexibility of the foot contribute greatly to the rapidity of movement
for which this celebrated bird is famous. The limb of the ostrich, with
its large bones placed very obliquely to form a system of powerful
levers, is the very embodiment of speed. The foot is quite worthy of
the limb, it being in some respects the most admirable structure of its
kind in existence. The foot of the ostrich differs considerably from
that of all other birds, those of its own family excepted. Thus the
under portion of the foot is flat, and specially adapted for acting
on plane surfaces, particularly solids.[31] The extremities of the
toes superiorly are armed with powerful short nails, the tips of which
project inferiorly to protect the toes and confer elasticity when the
foot is leaving the ground. The foot, like the leg, is remarkable
for its great strength. The legs of the ostrich are closely set,
another feature of speed.[32] The wings of the ostrich are in a very
rudimentary condition as compared with the legs.[33] All the bones are
present, but they are so dwarfed that they are useless as organs of
flight. The angles which the bones of the wing make with each other,
are still less than the angles made by the bones of the leg. This
is just what we would _a priori_ expect, as the velocity with which
wings are moved greatly exceeds that with which legs are moved. The
bones of the wing of the ostrich are inclined towards each other at
nearly right angles. The wings of the ostrich, although useless as
flying organs, form important auxiliaries in running. When the ostrich
careers along the plain, he spreads out his wings in such a manner that
they act as balancers, and so enable him to maintain his equilibrium
(fig. 25). The wings, because of the angle of inclination which their
under surfaces make with the horizon, and the great speed at which
the ostrich travels, act like kites, and so elevate and carry forward
by a mechanical adaptation a certain proportion of the mass of the
bird already in motion. The elevating and propelling power of even
diminutive inclined planes is very considerable, when carried along
at a high speed in a horizontal direction. The wings, in addition
to their elevating and propelling power, contribute by their short,
rapid, swinging movements, to continuity of motion in the legs. No bird
with large wings can run well. The albatross, for example, walks with
difficulty, and the same may be said of the vulture and eagle. What,
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account