Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
Fig.197. Male embryo of the Siamang-gibbon (Hylobates siamanga) of
Sumatra. Fig. 197—Male embryo of the Siamang-gibbon (_Hylobates
siamanga_) of Sumatra; to the left the dissected uterus, of which only
the dorsal half is given. The embryo has been taken out, and the limbs
folded together; it is still connected by the umbilical cord with the
centre of the circular placenta which is attached to the inside of the
womb. This embryo takes the head-position in the womb, and this is
normal in man also.
The peculiar anatomic features that characterise the human fœtal
membranes are found in just the same way in the higher
apes. Until recently it was thought that the human embryo was
distinguished by its peculiar construction of a solid allantois and a
special ventral pedicle, and that the umbilical cord developed from
this in a different way than in the other mammals. The opponents of the
unwelcome “ape-theory” laid great stress on this, and thought they had
at last discovered an important indication that separated man from all
the other placentals. But the remarkable discoveries published by the
distinguished zoologist Selenka in 1890 proved that man shares these
peculiarities of placentation with the anthropoid apes, though they are
not found in the other apes. Thus the very feature which was advanced
by our critics as a disproof became a most important piece of evidence
in favour of our pithecoid origin.)
Fig.198. Frontal section of the pregnant human womb. Fig. 198—Frontal
section of the pregnant human womb. (From _Turner._) The embryo (a
month old) hangs in the middle of the amniotic cavity by the ventral
pedicle or umbilical cord, which connects it with the placenta (above).
Of the three vesicular appendages of the amniote embryo which we have
now described the amnion has no blood-vessels at any moment of its
existence. But the other two vesicles, the yelk-sac and the allantois,
are equipped with large blood-vessels, and these effect the nourishment
of the embryonic body. We may take the opportunity to make a few
general observations on the first circulation in the embryo and its
central organ, the heart. The first blood-vessels, the heart, and the
first blood itself, are formed from the gut-fibre layer. Hence it was
called by earlier embryologists the “vascular layer.” In a sense the
term is quite correct. But it must not be understood as if all the
blood-vessels in the body came from this layer, or as if the whole of
this layer were taken up only with the formation of blood-vessels.
Neither of these suppositions is true. Blood-vessels may be formed
independently in other parts, especially in the various products of the
skin-fibre layer.
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