The works of Francis Maitland Balfour, Volume 3 (of 4) : $b A treatise on comparative embryology: VertebrataBalfour, Francis M. (Francis Maitland)
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The works of Francis Maitland Balfour, Volume 3 (of 4) : $b A treatise on comparative embryology: Vertebrata
Balfour, Francis M. (Francis Maitland)
Embryology; Zoology
The first changes in the epiblast give rise to the central nervous
system. The epiblast, consisting of the nervous and epidermic strata
already indicated, becomes thickened along the axis of the embryo and
forms a keel projecting towards the yolk below: so great is the size
of this keel in the front part of the embryo that it influences the
form of the whole body and causes the outline of the surface adjoining
the yolk to form a strong ridge moulded on the keel of the epiblast
(fig. 32 A and B). Along the dorsal line of the epiblast keel is
placed the shallow medullary groove; and according to Calberla (No.
61) the keel is formed by the folding together of the two sides of the
primitively uniform epiblastic layer. The keel becomes gradually
constricted off from the external epiblast and then forms a _solid
cord_ below it. Subsequently there appears in this cord a median
slit-like canal, which forms the permanent central canal of the
cerebrospinal cord. The peculiarity in the formation of the central
nervous system of Teleostei consists in the fact that it is not formed
by the folding over of the sides of the medullary groove into a canal,
but by the separation, below the medullary groove, of a solid cord of
epiblast in which the central canal is subsequently formed. Various
views have been put forward to explain the apparently startling
difference between Teleostei, with which Lepidosteus and Petromyzon
agree, and other vertebrate forms. The explanations of Götte and
Calberla appear to me to contain between them the truth in this
matter. The groove above in part represents the medullary groove; but
the closure of the groove is represented by the folding together of
the lateral parts of the epiblast plate to form the medullary keel.
According to Götte this is the whole explanation, but Calberla states
for Syngnathus and Salmo that the epidermic layer of the epiblast is
carried down into the keel as a double layer just as if it had been
really folded in. This ingrowth of the epidermic layer is shewn in
fig. 32 A where it is just commencing to pass into the keel; and at a
later stage in fig. 32 B where the keel has reached its greatest
depth.
Götte maintains that Calberla's statements are not to be trusted, and
I have myself been unable to confirm them for Teleostei or
Lepidosteus; but if they could be accepted the difference in the
formation of the medullary canal in Teleostei and in other Vertebrata
would become altogether unimportant and consist simply in the fact
that the ordinary open medullary groove is in Teleostei obliterated in
its inner part by the two sides of the groove coming together. Both
layers of epiblast would thus have a share in the formation of the
central nervous system; the epidermic layer giving rise to the lining
epithelial cells of the central canal, and the nervous layer to the
true nervous tissue.
Public-domain text, read in full here on John Shaqi.
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