Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
There is also a complete agreement between the fore and hind limb in
the stem or shaft. The first section of the stem is supported by a
single strong bone--the humerus in the fore, the femur in the hind
limb. The second section contains two bones: in front the radius (r)
and ulna (u), behind the tibia and fibula. (Cf. the skeletons in
Figures 2.260, 2.265, 2.270, 2.278 to 2.282, and 2.348.) The
succeeding numerous small bones of the wrist (carpus) and ankle
(tarsus) are also similarly arranged in the fore and hind extremities,
and so are the five bones of the middle-hand (metacarpus) and
middle-foot (metatarsus). Finally, it is the same with the toes
themselves, which have a similar characteristic composition from a
series of bony pieces before and behind. We find a complete parallel
in all the parts of the fore leg and the hind leg.
When we thus learn from comparative anatomy that the skeleton of the
human limbs is composed of just the same bones, put together in the
same way, as the skeleton in the four higher classes of Vertebrates,
we may at once infer a common descent of them from a single stem-form.
This stem-form was the earliest amphibian that had five toes on each
foot. It is particularly the outer parts of the limbs that have been
modified by adaptation to different conditions. We need only recall
the immense variations they offer within the mammal class. We have the
slender legs of the deer and the strong springing legs of the
kangaroo, the climbing feet of the sloth and the digging feet of the
mole, the fins of the whale and the wings of the bat. It will readily
be granted that these organs of locomotion differ as much in regard to
size, shape, and special function as can be conceived. Nevertheless,
the bony skeleton is substantially the same in every case. In the
different limbs we always find the same characteristic bones in
essentially the same rigidly hereditary connection; this is as
splendid a proof of the theory of evolution as comparative anatomy can
discover in any organ of the body. It is true that the skeleton of the
limbs of the various mammals undergoes many distortions and
degenerations besides the special adaptations (Figure 2.342). Thus we
find the first finger or the thumb atrophied in the fore-foot (or
hand) of the dog (II). It has entirely disappeared in the pig (III)
and tapir (V). In the ruminants (such as the ox, IV) the second and
fifth toes are also atrophied, and only the third and fourth are well
developed (VI, 3). Nevertheless, all these different fore-feet, as
well as the hand of the ape (Figure 2.340) and of man (Figure 2.341),
were originally developed from a common pentadactyle stem-form. This
is proved by the rudiments of the degenerated toes, and by the
similarity of the arrangement of the wrist-bones in all the pentanomes
(Figure 2.342 a to p).
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