Anatomy, Comparative; Embryology, Human; Evolution; Human beings -- Origin
Fig.124. Longitudinal section of the coelomula of amphioxus. Fig.
124—Longitudinal section of the cœlomula of amphioxus (from the left).
_i_ entoderm, _d_ primitive gut, _cn_ medullary duct, _n_ nerve tube,
_m_ mesoderm, _s_ first primitive segment, _c_ cœlom-pouches. (From
_Hatschek._)
The enigmatic _neurenteric canal_ is a very old embryonic organ, and of
great phylogenetic interest, because it arises in the same way in all
the chordonia (both tunicates and vertebrates). In every case it
touches or embraces like an arch the posterior end of the chorda, which
has been developed here in front out of the middle line of the
primitive gut (between the two cœlom-folds of the sickle groove)
(“head-process,” Fig. 123 _kf_). These very ancient and strictly
hereditary structures, which have no physiological significance to-day,
deserve (as “rudimentary organs”) our closest attention. The tenacity
with which the useless neurenteric canal has been transmitted down to
man through the whole series of vertebrates is of equal interest for
the theory of descent in general, and the phylogeny of the chordonia in
particular.
The connection which the neurenteric canal (Fig. 123 _cn_) establishes
between the dorsal nerve-tube (_n_) and the ventral gut-tube (_d_) is
seen very plainly in the amphioxus in a longitudinal section of the
cœlomula, as soon as the primitive mouth is completely closed at its
hinder end. The medullary tube has still at this stage an opening at
the forward end, the neuroporus Fig. 83 _np_). This opening also is
afterwards closed. There are then two completely closed canals over
each other—the medullary tube above and the gastric tube below, the two
being separated by the chorda. The same features as in the acrania are
exhibited by the related tunicates, the ascidiæ.
Fig.125. Longitudinal section of the chordula of a frog. Fig.
125—Longitudinal section of the chordula of a frog. (From _Balfour._)
_nc_ nerve-tube, _x_ canalis neurentericus, _al_ alimentary canal, _yk_
yelk-cells, _m_ mesoderm.
Again, we find the neurenteric canal in just the same form and
situation in the amphibia. A longitudinal section of a young tadpole
(Fig. 125) shows how we may penetrate from the still open primitive
mouth (_x_) either into the wide primitive gut-cavity (_al_) or the
narrow overlying nerve-tube. A little later, when the primitive mouth
is closed, the narrow neurenteric canal (Fig. 126 _ne_) represents the
arched connection between the dorsal medullary canal (_mc_) and the
ventral gastric canal.
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