columnar epithelial cells which constitutes the wall of the gut (which we
see in its initial stage in the retinal ganglion of Artemia), would tend
rapidly to increase as more and more demands were made upon the brain,
until at last both the supra- and infra-oesophageal ganglia, as well as the
retinal ganglia and optic nerves, were in such close intimate connection
with the ventral wall of the anterior portion of the gut and its
diverticula as to form a brain and retina closely resembling that of
Ammocoetes.
Such an origin for the lateral eyes of the vertebrate explains in a simple
and satisfactory manner why the vertebrate retina is a compound retina, and
why both retina and optic nerve have an apparent tubular development.
At the same time one discrepancy still exists which requires
consideration--viz. in no arthropod eye possessing a compound retina is the
retina inverted. All the known cases of inversion among arthropods occur in
eyes, the retina of which is simple, and are all natural consequences of
the process of invagination by which {114}the retina is formed. On the
other hand, eyes with an inverted compound retina are not entirely unknown
among invertebrates, for the eyes of Pecten and of Spondylus possess a
retina which is inverted after the vertebrate fashion and still may be
spoken of as compound rather than simple. It is clear that an invagination,
the effect of which is an inversion of the retinal layer, would lead to the
same result, whether the retinal optic nerves were short or long, whether,
in fact, a retinal ganglion existed or not. Undoubtedly the presence of the
retinal ganglion tends greatly to obscure any process of invagination, so
that, as already mentioned, many observers, with Parker, consider the
retina of the crustacean lateral eye to be formed by a thickening only,
without any invagination, while Reichenbach says an obscure invagination
does take place at a very early stage. So in the vertebrate eye most
observers speak only of a thickening to form the retina, but Götte's
observation points to an invagination of the optic plate at an early stage.
So also in the eye of Pecten, Korschelt and Heider consider that the
thickening, by which the retina is formed according to Patten, in reality
hides an invagination process by means of which, as Bütschli suggests, an
optic vesicle is formed in the usual manner. The retina is formed from the
anterior wall of this vesicle, and is therefore inverted.
Public-domain text, read in full here on John Shaqi.
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