Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
As regards the external membrane that encloses the ovum in the mammal
womb, we find it just the same in man as in the higher mammals. The
ovum is, the reader will remember, first surrounded by the transparent
structureless ovolemma or zona pellucida (Figures 1.1 and 1.14). But
very soon, even in the first week of development, this is replaced by
the permanent chorion. This is formed from the external layer of the
amnion, the serolemma, or "serous membrane," the formation of which we
shall consider presently; it surrounds the foetus and its appendages
as a broad, completely closed sac; the space between the two, filled
with clear watery fluid, is the serocoelom, or interamniotic cavity
("extra-embryonic body-cavity"). But the smooth surface of the sac is
quickly covered with numbers of tiny tufts, which are really hollow
outgrowths like the fingers of a glove (Figures 1.186, 1.191 and 1.198
chz). They ramify and push into the corresponding depressions that are
formed by the tubular glands of the mucous membrane of the maternal
womb. Thus, the ovum secures its permanent seat (Figures 1.186 to
1.194).
In human ova of eight to twelve days this external membrane, the
chorion, is already covered with small tufts or villi, and forms a
ball or spheroid of one-fourth to one-third of an inch in diameter
(Figures 1.186 to 1.188). As a large quantity of fluid gathers inside
it, the chorion expands more and more, so that the embryo only
occupies a small part of the space within the vesicle. The villi of
the chorion grow larger and more numerous. They branch out more and
more. At first the villi cover the whole surface, but they afterwards
disappear from the greater part of it; they then develop with
proportionately greater vigour at a spot where the placenta is formed
from the allantois.
When we open the chorion of a human embryo of three weeks, we find on
the ventral side of the foetus a large round sac, filled with fluid.
This is the yelk-sac, or "umbilical vesicle," the origin of which we
have considered previously. The larger the embryo becomes the smaller
we find the yelk-sac. In the end we find the remainder of it in the
shape of a small pear-shaped vesicle, fastened to a long thin stalk
(or pedicle), and hanging from the open belly of the foetus (Figure
1.194). This pedicle is the vitelline duct, and is separated from the
body at the closing of the navel.
Behind the yelk-sac a second appendage, of much greater importance, is
formed at an early stage at the belly of the mammal embryo. This is
the allantois or "primitive urinary sac," an important embryonic
organ, only found in the three higher classes of vertebrates. In all
the amniotes the allantois quickly appears at the hinder end of the
alimentary canal, growing out of the cavity of the pelvic gut (Figure
1.147 r, u, Figure 1.195 ALC}.
Public-domain text, read in full here on John Shaqi.
Reviews
Reviews
No reviews yet
Be the first to share your thoughts on this work.
Elsewhere in the archive
Join the Discussion
Join the discussion
Sign in to leave a comment or review.
Sign InorCreate an account