The works of Francis Maitland Balfour, Volume 3 (of 4) : $b A treatise on comparative embryology: VertebrataBalfour, Francis M. (Francis Maitland)
Science
The works of Francis Maitland Balfour, Volume 3 (of 4) : $b A treatise on comparative embryology: Vertebrata
Balfour, Francis M. (Francis Maitland)
Embryology; Zoology
While the above changes are taking place in the amnion, the allantois
grows out from the hind gut as a vesicle lined by hypoblast, but
covered externally by a layer of splanchnic mesoblast (fig. 147, 3 and
4, _al_)[83]. The allantois soon becomes a flat sack, projecting into
the now largely developed space between the subzonal membrane and the
amnion, on the dorsal side of the embryo (fig. 147*, _ALC_). In some
cases it extends so as to cover the whole inner surface of the
subzonal membrane; in other cases again its extension is much more
limited. Its lumen may be retained or may become nearly or wholly
aborted. A fusion takes place between the subzonal membrane and the
adjoining mesoblastic wall of the allantois, and the two together give
rise to a secondary membrane round the ovum, known as the chorion.
Since however the allantois does not always come in contact with the
whole inner surface of the subzonal membrane, the term chorion is apt
to be somewhat vague; and in the rabbit, for instance, a considerable
part of the so-called chorion is formed by a fusion of the wall of the
yolk-sack with the subzonal membrane (fig. 148). The placental region
of the chorion may in such cases be distinguished as the true chorion,
from the remaining part which will be called the false chorion.
[83] The hypoblastic element in the allantois is sometimes very
much reduced, so that the allantois may be mainly formed of a
vascular layer of mesoblast.
The mesoblast of the allantois, especially that part of it which
assists in forming the chorion, becomes highly vascular; the blood
being brought to it by two allantoic arteries continued from the
terminal bifurcation of the dorsal aorta, and returned to the body by
one, or rarely two, allantoic veins, which join the vitelline veins
from the yolk-sack. From the outer surface of the true chorion (fig.
147, 5, _d_, 148) villi grow out and fit into crypts or depressions
which have in the meantime made their appearance in the walls of the
uterus[84]. The villi of the chorion are covered by an epithelium
derived from the subzonal membrane, and are provided with a connective
tissue core containing an artery and vein and a capillary plexus
connecting them. In most cases they assume a more or less arborescent
form, and have a distribution on the surface of the chorion varying
characteristically in different species. The walls of the crypts into
which the villi are fitted also become highly vascular, and a
nutritive fluid passes from the maternal vessels of the placenta to
the foetal vessels by a process of diffusion; while there is probably
also a secretion by the epithelial lining of the walls of the crypts,
which becomes absorbed by the vessels of the foetal villi. The above
maternal and foetal structures constitute together the organ known as
the placenta. The maternal portion consists essentially of the
vascular crypts in the uterine walls, and the foetal portion of more
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