So, also, on the invertebrate side, the lateral eyes of Pterygotus and
Slimonia are situated on the margin of the prosomatic carapace, while those
of Eurypterus and Stylonurus are situated much nearer the middle line of
the prosomatic carapace.
Next comes the question of the superior oblique muscle and the trochlearis
nerve. Why does this nerve (_n.IV._ in Fig. 106, C and D) alone of all the
nerves in the body take the peculiar position it always does take? The only
suggestion that I know of which sounds reasonable and worth consideration
is that put forward by Fürbringer, which is an elaboration of the original
suggestion of Hoffmann. Hoffmann suggested in 1889 that the trochlearis
nerve represented originally a nerve for a protecting organ of the pineal
eye, which became secondarily a motor nerve for the lateral eye as the
pineal eye degenerated. Fürbringer differs from Hoffmann in that he
considers that the nerve was originally a motor nerve, and was not
transformed from sensory to motor, yet thinks Hoffmann's suggestion is in
the right direction.
He points out that the crossing of the trochlearis is not a crossing of
fibres between two centres in the central nervous system, but may be
explained by the shifting of the peripheral organ, _i.e._ the muscle, from
one side to the other, and the nerve following this shift. Consequently,
says Fürbringer, the course of the nerve indicates the original position of
the muscle, and therefore he imagines that the ancestor of the superior
oblique muscle was a muscle the fibres of which were attached in the
mid-dorsal line, and interlaced with those of the other side, the two
muscles thus forming an arch through which the nervous system with its
central canal passed. Then, for the sake of getting a more efficient pull,
the crossing muscle-fibres became more definitely attached to the opposite
side of the middle line, and finally obtained a new attachment on the
opposite side, with the {277}obliteration of the muscular arch; the nerve
on each side, following the shifts of the muscle, naturally took up the
position of the original muscular arch, and so formed the trochlear nerve,
with its dorsal crossing. This explanation of Fürbringer's was associated
by him with movements of the median pineal eyes, the length of their nerve,
according to him, even yet indicating their previous mobility. This
assumption is not, it seems to me, necessary. The length of the nerve is
certainly no indication of mobility, for in Limulus and the scorpion group
the nerve to each median eye is remarkably long, yet these eyes are
immovably fixed in the carapace. All that is required is a pair of
dorso-ventral muscles belonging to the segment immediately following the
group of segments represented by the oculomotor nerves, the fibres of which
should cross the mid-dorsal line at their attachment; for, seeing that the
lateral eyes were originally so near this position, it follows that such
Public-domain text, read in full here on John Shaqi.
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