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
or less arborescent villi of the true chorion fitting into these
crypts.
[84] These crypts have no connection with the openings of glands
in the walls of the uterus. They are believed by Ercolani to be
formed to a large extent by a regeneration of the lining tissue
of the uterine walls.
While the placenta is being developed, the folding-off of the embryo
from the yolk-sack becomes more complete; and the yolk-sack remains
connected with the ileal region of the intestine by a narrow stalk,
the vitelline duct (fig. 147, 4 and 5 and fig. 147*), consisting of
the same tissues as the yolk-sack, viz. hypoblast and splanchnic
mesoblast. While the true splanchnic stalk of the yolk-sack is
becoming narrow, a somatic stalk connecting the amnion with the walls
of the embryo is also formed, and closely envelops the stalk both of
the allantois and the yolk-sack. The somatic stalk together with its
contents is known as the umbilical cord. The mesoblast of the
somatopleuric layer of the cord develops into a kind of gelatinous
tissue, which cements together the whole of the contents. The
allantoic arteries in the cord wind in a spiral manner round the
allantoic vein. The yolk-sack in many cases atrophies completely
before the close of intra-uterine life, but in other cases it is only
removed with the other embryonic membranes at birth. The
intra-embryonic portion of the allantoic stalk gives rise to two
structures, viz. to (1) the urinary bladder formed by a dilatation of
its proximal extremity, and to (2) a cord known as the urachus
connecting the bladder with the wall of the body at the umbilicus. The
urachus, in cases where the cavity of the allantois persists till
birth, remains as an open passage connecting the intra- and
extra-embryonic parts of the allantois. In other cases it gradually
closes, and becomes nearly solid before birth, though a delicate but
interrupted lumen would appear to persist in it. It eventually gives
rise to the ligamentum vesicæ medium.
At birth the foetal membranes, including the foetal portion of the
placenta, are shed; but in many forms the interlocking of the foetal
villi with the uterine crypts is so close that the uterine mucous
membrane is carried away with the foetal part of the placenta. It thus
comes about that in some placentæ the maternal and foetal parts simply
separate from each other at birth, and in others the two remain
intimately locked together, and both are shed together as the
afterbirth. These two forms of placenta are distinguished as
non-deciduate and deciduate, but it has been shewn by Ercolani and
Turner that no sharp line can be drawn between the two types;
moreover, a larger part of the uterine mucous membrane than that
forming the maternal part of the placenta is often shed in the
deciduate Mammalia, and in the non-deciduate Mammalia it is probable
that the mucous membrane (not including vascular parts) of the
maternal placenta either peels or is absorbed.
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