The second primary constriction separating the mid-brain from the
hind-brain is still more interesting, for it is coincident with the
position of the trochlear or fourth cranial nerve. In all vertebrates
without exception this nerve takes an extraordinary course; all other
nerves, whether cranial or spinal, pass ventralwards to reach their
destination. This nerve passes dorsalwards, crosses its fellow mid-dorsally
in the valve of Vieussens, where the roof of the brain is thin, and then
passes out to supply the superior oblique muscle of the eye of the opposite
side. The two nerves form an arch constricting the dilated tube at this
place. In the lowest vertebrate (Ammocoetes) the constriction formed by
this nerve-pair is evident not only in the embryonic condition as in other
vertebrates, but during the whole larval stage. As Fig. 20, A and B, shows,
the whole of the dorsal {49}region of the brain up to the region of the
pineal eye and _ganglion habenulæ_ is one large membranous bag, except for
the single constriction where the fourth nerve on each side crosses over.
The explanation of this peculiarity is given in Chapter VII., and follows
simply from the facts of the arrangement of that musculature in the
scorpion-group which gave rise to the eye-muscles of the vertebrate.
In Ammocoetes both cerebellum and posterior corpora quadrigemina can hardly
be said to exist, but upon transformation a growth of nervous material
takes place in this region, and it is seen that this commencing cerebellum
and the corpora quadrigemina arise from tissue that is present in
Ammocoetes along the course of the fourth nerve.
Here, then, again Embryology does its best to tell us how the vertebrate
arose. The formation of the two primary constrictions in the dilated
anterior vesicle whereby the brain is divided into fore-brain, mid-brain,
and hind-brain is simply the representation ontogenetically of the two
nerve-tracts which crossed over the cephalic stomach in the prevertebrate
stage, in consequence of the mid-dorsal position of the pineal eyes and of
the insertion of the original superior oblique muscles.
The subsequent constriction by which the prosencephalon is separated from
the thalamencephalon is in the position of the anterior commissure, that
commissure which connects the two supra-infundibular nerve-masses, and is
one of the first-formed commissures in every vertebrate. This naturally is
simply the commissure between the two supra-oesophageal ganglia; anterior
to it, in the middle line, equally naturally, the anterior end of the old
stomach wall still exists as the _lamina terminalis_.
The other division in the hind-brain region, which separates the region of
the cerebellum from the medulla oblongata, is due to the growth of the
cerebellum, and indicates its posterior limit. In such an animal as the
lamprey, where the cerebellum is only commencing, this constriction does
not occur in the embryo.
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