their origin continuous with all the other tissues of the body, with
that of the central nervous system and with that which becomes
transformed into muscular tissue and connective and epithelial
tissues. All these tissues are developed from the general reticulum,
which in the young embryo can be seen to pervade the whole body, not
being confined to the mesoderm, but extending between the nuclei of
the ectoderm and endoderm, and forming the extra-nuclear, so-called
cellular, protoplasm of those layers. Moreover, it must be remarked
that in the stages of the embryo with which we are here concerned the
so-called cellular constitution of the tissues, which is such a marked
feature of the older embryo and adult, has not been arrived at. It is
true, indications of it may be seen in some of the earlier-formed
epithelia, but of nerve cells, muscular cells, and many kinds of gland
cells no distinct signs are yet visible. This remark particularly
applies to nerve cells, which do not make their appearance until a
much later stage--not, indeed, until some time after the principal
nerve trunks and ganglia are indicated as tracts of pale fibrous
substance and aggregations of nuclei respectively.
The embryos of Elasmobranchs--particularly of _Scyllium_--are the best
objects in which to study the development of nerves. In many embryos
it is difficult to make out what happens, because the various parts of
the body remain so close together that the process is obscured, and
the loosening of the mesoblastic nuclei is deferred until after the
nerves have begun to be differentiated. The process may also be traced
in the embryos of _Peripatus_, where the main features are essentially
similar to those above described (op. cit. p. 131). The development of
the motor nerves has been worked out in _Lepidosiren_ by J. Graham
Kerr (_Trans. Roy. Soc. of Edinburgh_, 41, 1904. p. 119).
To sum up, the development of nerves is not, as has been recently urged,
an outgrowth of cell processes from certain cells, but is a
differentiation of a substance which was already in position, and from
which all other organs of the body have been and are developed. It
frequently happens that the young nerve tracts can be seen sooner near
the central organ than elsewhere, but it is doubtful if any importance
can be attached to this fact, since it is not constantly observed. For
instance, in the case of the third nerve of _Scyllium_ the
differentiation appears to take place earliest near the ciliary
ganglion, and to proceed from that point to the base of the mid-brain.
Coelom.
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