Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
In order to understand clearly this important process, we may compare
the embryo to a fortress with its surrounding rampart and trench. The
ditch consists of the outer part of the germinative area, and comes to
an end at the point where the area passes into the vesicle. The
important fold of the middle germinal layer that brings about the
formation of the body-cavity spreads beyond the borders of the embryo
over the whole germinative area. At first this middle layer reaches as
far as the germinative area; the whole of the rest of the embryonic
vesicle consists in the beginning only of the two original limiting
layers, the outer and inner germinal layers. Hence, as far as the
germinative area extends the germinal layer splits into the two plates
we have already recognised in it, the outer skin-fibre layer and the
inner gut-fibre layer. These two plates diverge considerably, a clear
fluid gathering between them (Figure 1.140 am). The inner plate, the
gut-fibre layer, remains on the inner layer of the embryonic vesicle
(on the gut-gland layer). The outer plate, the skin-fibre layer, lies
close on the outer layer of the germinative area, or the skin-sense
layer, and separates together with this from the embryonic vesicle.
From these two united outer plates is formed a continuous membrane.
This is the circular mound that rises higher and higher round the
whole embryo, and at last joins above it (Figures 1.139 to 1.142 am).
To return to our illustration of the fortress, we must imagine the
circular rampart to be extraordinarily high and towering far above the
fortress. Its edges bend over like the combs of an overhanging wall of
rock that would enclose the fortress; they form a deep hollow, and at
last join together above. In the end the fortress lies entirely within
the hollow that has been formed by the growth of the edges of this
large rampart.
(FIGURE 1.137. Three diagrammatic transverse sections of the embryonic
disk of the higher vertebrate, to show the origin of the tubular
organs from the bending germinal layers. In Figure A the medullary
tube (n) and the alimentary canal (a) are still open grooves. In
Figure B the medullary tube (n) and the dorsal wall are closed, but
the alimentary canal (a) and the ventral wall are open; the prorenal
ducts (u) are cut off from the horn-plate (h) and internally connected
with segmental prorenal canals. In Figure C both the medullary tube
and the dorsal wall above and the alimentary canal and ventral wall
below are closed. All the open grooves have become closed tubes; the
primitive kidneys are directed inwards. The letters have the same
meaning in all three figures: h skin-sense layer, n medullary tube, u
prorenal ducts, x axial rod, s primitive-vertebra, r dorsal wall, b
ventral wall, c body-cavity or coeloma, f gut-fibre layer, t primitive
artery (aorta), v primitive vein (subintestinal vein), d gut-fibre
layer, a alimentary canal.)
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