Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
The same principle holds good for the amniotes, the reptiles, birds,
and mammals, although in this case the processes of coelomation are
more modified and more difficult to identify on account of the
colossal accumulation of food-yelk and the corresponding notable
flattening of the germinal disk. However, as the whole group of the
amniotes has been developed at a comparatively late date from the
class of the amphibia, their coelomation must also be directly
traceable to that of the latter. This is really possible as a matter
of fact; even the older illustrations showed an essential identity of
features. Thus forty years ago Kolliker gave, in the first edition of
his Human Embryology (1861), some sections of the chicken-embryo, the
features of which could at once be reduced to those already described
and explained in the sense of Hertwig's coelom-theory. A section
through the embryo in the hatched hen's egg towards the close of the
first day of incubation shows in the middle of the dorsal surface a
broad ectodermic medullary groove (Figure 1.92 Rf), and underneath the
middle of the chorda (ch) and at each side of it a couple of broad
mesodermic layers (sp). These enclose a narrow space or cleft (uwh),
which is nothing else than the structure of the body-cavity. The two
layers that enclose it--the upper parietal layer (hpl) and the lower
visceral layer (df)--are pressed together from without, but clearly
distinguishable. This is even clearer a little later, when the
medullary furrow is closed into the nerve-tube (Figure 1.93 mr).
Special importance attaches to the fact that here again the four
secondary germinal layers are already sharply distinct, and easily
separated from each other. There is only one very restricted area in
which they are connected, and actually pass into each other; this is
the region of the primitive mouth, which is contracted in the amniotes
into a dorsal longitudinal cleft, the primitive groove. Its two
lateral lip-borders form the primitive streak, which has long been
recognised as the most important embryonic source and starting-point
of further processes. Sections through this primitive streak (Figures
1.94 and 1.95) show that the two primary germinal layers grow at an
early stage (in the discoid gastrula of the chick, a few hours after
incubation) into the primitive streak (x), and that the two middle
layers extend outward from this thickened axial plate (y) to the right
and left between the former. The plates of the coelom-layers, the
parietal skin-fibre-layer (m) and the visceral gut-fibre-layer (f),
are seen to be still pressed close together, and only diverge later to
form the body-cavity. Between the inner borders of the two flat
coelom-pouches lies the chorda (Figure 1.95 x), which here again
develops from the middle line of the dorsal wall of the primitive gut.
Public-domain text, read in full here on John Shaqi.
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