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 unincubated blastoderm (Pl. 1, fig. 1) consists of two layers. The
upper layer is composed of a single row of columnar cells. Occasionally,
however, the layer may be two cells thick. The cells are filled with highly
refracting spherules of a very small size, and similar in appearance to the
finest white yolk spherules, and each cell also contains a distinct oval
nucleus. This membrane rests with its extreme edge on the white yolk, its
central portion covering in the segmentation cavity. From the very first it
is a distinct coherent membrane, and exhibits with silver nitrate a
beautiful hexagonal mosaic of the outlines (Pl. 1, fig. 6) of the cells.
The diameter of the cells when viewed from above is from 1/2000 - 1/3000 of
an inch. The under layer is very different from this: it is composed of
cells which are slightly, if at all, united, and which vary in size and
appearance, and in which a nucleus can rarely be seen. The cells of which
it is composed fill up irregularly the segmentation cavity, though a
distinct space is even at this time occasionally to be found at the bottom
of it. Later, when the blastoderm has spread and the white yolk floor has
been used as food, a considerable space filled with fluid may generally be
found.
The shape of the floor of the cavity varies considerably, but it is usually
raised in the middle and depressed near the circumference. In this case the
under layer is perhaps only two cells deep at the centre and three or four
cells deep near the circumference.
The cells of which this layer is composed vary a good deal in size; the
larger cells being, however, more numerous in the lower layers. In
addition, there are usually a few very large cells quite at the bottom of
the cavity, occasionally separated from the other cells by fluid. They were
called _formative cells_ (Bildungselemente) by Peremeschko (_loc. cit._);
and, according to Oellacher's observations (_loc. cit._), some of them, at
any rate, fall to the bottom of the segmentation cavity during the later
stages of segmentation. They do not differ from the general lower layer
cells except in size, and even pass into them by insensible gradations. All
the cells of the lower layer are granular, and are filled with highly
refracting spherules precisely similar to the smaller white yolk spherules
which line the bottom of the segmentation cavity.
The size of the ordinary cells of the lower layer varies from 1/2000 -
1/1000 of an inch. The largest of the formative cells come up to 1/300 of
an inch. It will be seen from this description that, morphologically
speaking, we cannot attach much importance to the formative cells. The fact
that they broke off from the blastoderm, towards the end of the
segmentation--even if we accept it as a normal occurrence, rather than the
result of manipulation--is not of much importance, and, except in size, it
is impossible to distinguish these cells from other cells of the lower
layer of the blastoderm.
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