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 formation of the central nervous system commences with the
flattening of the dorsal surface of the embryo. The flattened area
forms a plate (fig. 2 B and fig. 3 A, _np_), extending backwards to
the blastopore, which has in the meantime passed round to the dorsal
surface. The sides of the plate become raised as two folds, which are
most prominent posteriorly, and meet behind the blastopore, but shade
off in front. The two folds next unite dorsally, so as to convert the
previous groove into a canal[3]--the neural or medullary canal. They
unite first of all over the blastopore, and their line of junction
extends from this point forwards (fig. 2 C, D, E). There is in this
way formed a tube on the floor of which the blastopore opens behind,
and which is itself open in front. Finally the medullary canal is
formed for the whole length of the embryo. The anterior opening
persists however for some time. The communication between the neural
and alimentary tracts becomes interrupted when the caudal fin appears
and the anus is formed. The neural canal then extends round the end of
the notochord to the ventral side, but subsequently retreats to the
dorsal side and terminates in a slight dilatation.
[3] The details of this process are spoken of below.
In the formation of the medullary canal there are two points deserving
notice--viz. (1) the connection with the blastopore; (2) the relation
of the walls of the canal to the adjoining epiblast. With reference to
the first of these points it is clear that the fact of the blastopore
opening on the floor of the neural canal causes a free communication
to exist between the archenteron or gastrula cavity and the neural
canal; and that, so long as the anterior pore of the neural canal
remains open, the archenteron communicates indirectly with the
exterior (_vide_ fig. 2 E). It must not however be supposed (as has
been done by some embryologists) that the pore at the front end of the
neural canal represents the blastopore carried forwards. It is even
probable that what Kowalevsky describes as the carrying of the
blastopore to the dorsal side is really the commencement of the
formation of the neural canal, the walls of which are continuous with
the lips of the blastopore. This interpretation receives support from
the fact that at a later stage, when the neural and alimentary canals
become separated, the neural canal extends round the posterior end of
the notochord to the ventral side. The embryonic communication between
the neural and alimentary canals is common to most Chordata; and the
tube connecting them will be called the neurenteric canal. It is
always formed in fundamentally the same manner as in Amphioxus. With
reference to the second point it is to be noted that Amphioxus is
exceptional amongst the Chordata in the fact that, before the closure
of the neural groove, the layer of cells which will form the neural
tube becomes completely separated from the adjoining epiblast (fig. 3
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