In the horizontal longitudinal sections it is seen that these strands are
confined to the middle of the eye. On each side of them the nuclear layer
reaches the periphery, so that if we consider these strands to represent
long cylindrical cells, as described by Beard, then the anterior wall may
be described as consisting of long cylindrical cells, which are flanked on
either side by shorter cells of a similar kind. The nuclei at the base of
these cylindrical cells are not all alike. We see, in the first place,
large nuclei resembling the large nuclei belonging to the nerve end-cells;
these are the nuclei of {85}the long cylindrical cells. We see also smaller
nuclei in among these larger ones, which look like nuclei of intrusive
connective tissue, or may perhaps form a distinct layer of cells, situated
between the cells of the anterior wall and the terminations of the nerve
end-cells already referred to.
These elongated cells are in exactly the same position and present the same
appearance as the cells of the corneagen layer of any median eye. Like the
latter they are free from pigment and never show with osmic staining any
sign of the presence of translucent rhabdite-like bodies, such as are seen
in the termination of the retinal cells, and like the latter their nuclei
are at the base. The resemblance between this layer and the corneagen cells
of any median eye is absolute. Between it and the terminations of the
retinal cells there exists some ill-defined material certainly containing
cells which may well correspond to Patten's pre-retinal layer of cells.
Retina, corneagen, nerve, optic ganglion, all are there, all in their right
position, all of the right structure, what more is needed to complete the
picture?
[Illustration: FIG. 37.--PINEAL EYE OF AMMOCOETES, WITH ITS _Ganglion
Habenulæ_.]
In order to complete the dioptric apparatus a lens is necessary. Where,
then, is the lens in these pineal eyes? In all the arachnid eyes, whether
median or lateral, the lens is a single corneal lens composed of the
external cuticle, which is thickened over the corneagen cells. This
thickened cuticle is composed of chitin, and is not cellular, but is dead
material formed out of the living underlying corneagen cells. Such a lens
is in marked contrast to the lens of the lateral vertebrate eye, which is
formed by living cells themselves. This {86}thickening of the cuticular
layer to form a lens could only exist as long as that layer is absolutely
external, so that the light strikes immediately upon it; for, if from any
cause the eye became situated internally, the place of such a lens must be
filled by the structures situated between it and the surface, and the
thickened cuticle would no longer be formed.
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