The works of Francis Maitland Balfour, Volume 1 (of 4) : $b Separate memoirs — John Shaqi
The works of Francis Maitland Balfour, Volume 1 (of 4) : $b Separate memoirsBalfour, Francis M. (Francis Maitland)
Science
The works of Francis Maitland Balfour, Volume 1 (of 4) : $b Separate memoirs
Balfour, Francis M. (Francis Maitland)
Embryology; Zoology
The growth of the hypoblast takes place in a very different way. It occurs
by a direct conversion, cell for cell, of the white yolk spheres into
hypoblast cells. This interpretation of the appearances, which I will
describe presently, was first suggested to me by Dr Foster, from an
examination of some of my specimens of about thirty-six hours, prepared
with silver nitrate. Where there is no folding at the junction between the
pellucid and opaque areas, there seems to be a perfect continuity in the
silver markings and a gradual transition in the cells, from what would be
undoubtedly called white yolk spheres, to as undoubted hypoblast cells
(vide Pl. 1, fig. 5). In passing from the opaque to the pellucid areas the
number of white yolk spherules in each cell becomes less, but it is not
till some way into the pellucid area that they quite cease to be present. I
at first thought that this was merely due to the hypoblast cells feeding on
the white yolk sphericles, but the perfect continuity of the cells, and the
perfect gradation in passing from the white yolk cells to the hypoblast,
proves that the other interpretation is the correct one, viz. that the
white yolk spheres become directly converted into the hypoblast cells. This
is well shewn in sections (vide Pl. 1, fig. 4) taken from embryos of all
ages from the fifteenth to the thirty-sixth hour and onwards. But it is,
perhaps, most easily seen in embryos of about twenty hours. In such an
embryo there is a most perfect gradation: the cells of the hypoblast
become, as they approach the edge of the pellucid area, broader, and are
more and more filled with white yolk sphericles, till at the line of
junction it is quite impossible to say whether a particular cell is a
white-yolk cell (sphere) or a hypoblast cell. The white-yolk cells near the
line of junction can frequently be seen to possess nuclei. At first the
hypoblast appears to end abruptly against the white yolk; this state of
things, however, soon ends, and there supervenes a complete and unbroken
continuity between the hypoblast and the white yolk.
Of the mode of increase of the epiblast I have but little to say. The cells
undoubtedly increase entirely by division, and the new material is most
probably derived directly from the white yolk.
Up to the sixth hour the cells of the upper layer retain their early
regular hexagonal pattern, but by the twelfth hour they have generally
entirely lost this, and are irregularly shaped and very angular. The cells
over the centre of the pellucid area remain the smallest up to the
twenty-fifth hour or later, while those over the rest of the pellucid area
are uniformly larger.
In the hypoblast the cells under the primitive groove, and on each side as
far as the fold which marks off the exterior limit of the protovertebræ are
at the eighteenth hour considerably smaller than any other cells of this
layer.
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