Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
Fig.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. Fig. 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 Fig.
_A_ the medullary tube (_n_) and the alimentary canal (_a_) are still
open grooves. In Fig. _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 Fig. _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 cœloma, _f_ gut-fibre layer, _t_ primitive artery (aorta), _v_
primitive vein (subintestinal vein), _d_ gut-fibre layer, _a_
alimentary canal.
As the two outer layers of the germinative area thus rise in a fold
about the embryo, and join above it, they come at last to form a
spacious sac-like membrane about it. This envelope takes the name of
the germinative membrane, or water-membrane, or _amnion_ (Fig. 142
_am_). The embryo floats in a watery fluid, which fills the space
between the embryo and the amnion, and is called the amniotic fluid
(Figs. 141, 142 _ah_). We will deal with this remarkable formation and
with the allantois later on (Chapter XV). In front of the allantois the
yelk-sac or umbilical vesicle (_ds_), the remainder of the original
embryonic vesicle, starts from the open belly of the embryo (Fig. 138
_kh_). In more advanced embryos, in which the gastric wall and the
ventral wall are nearly closed, it hangs out of the navel-opening in
the shape of a small vesicle with a stalk (Figs. 141, 142 _ds_). The
more the embryo grows, the smaller becomes the vitelline (yelk) sac. At
first the embryo looks like a small appendage of the large embryonic
vesicle. Afterwards it is the yelk-sac, or the remainder of the
embryonic vesicle, that seems a small pouch-like appendage of the
embryo (Fig. 142 _ds_). It ceases to have any significance in the end.
The very wide opening, through which the gastric cavity at first
communicates with the umbilical vesicle, becomes narrower and narrower,
and at last disappears altogether. The _navel,_ the small pit-like
depression that we find in the developed man in the middle of the
abdominal wall, is the spot at which the remainder of the embryonic
vesicle (the umbilical vesicle) originally entered into the ventral
cavity, and joined on to the growing gut.
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