The Principles of Biology, Volume 1 (of 2)Spencer, Herbert
Science
The Principles of Biology, Volume 1 (of 2)
Spencer, Herbert
Biology
office of making them contract (nerves and ganglia). As we pass upwards,
the transfer of force, hitherto effected quite incidentally, comes to have
a special organ. In the ascidian, circulation is produced by a muscular
tube, open at both ends, which, by a wave of contraction passing along it,
sends out at one end the nutrient fluid drawn in at the other; and which,
having thus propelled the fluid for a time in one direction, reverses its
movement and propels it in the opposite direction. By such means does this
rudimentary heart generate alternating currents in the nutriment occupying
the peri-visceral cavity. How the function of transferring energy, thus
vaguely indicated in these inferior forms, comes afterwards to be the
definitely-separated office of a complicated apparatus made up of many
parts, each of which has a particular portion of the general duty, need not
be described. It is sufficiently manifest that this general function
becomes more clearly marked-off from the others, at the same time that it
becomes itself parted into subordinate functions.
In a developing embryo, the functions or more strictly the structures which
are to perform them, arise in the same general order. A like primary
distinction very early appears between the endoderm and the ectoderm--the
part which has the office of accumulating energy, and the part out of which
grow those organs that are the great expenders of energy. Between these two
there presently arises the mesoderm in which becomes visible the rudiment
of that vascular system, which has to fulfil the intermediate duty of
transferring energy. Of these three general functions, that of accumulating
energy is carried on from the outset: the endoderm, even while yet
incompletely differentiated from the ectoderm, absorbs nutritive matters
from the subjacent yelk. The transfer of energy is also to some extent
effected by the rudimentary vascular system, as soon as its central cavity
and attached vessels are sketched out. But the expenditure of energy (in
the higher animals at least) is not appreciably displayed by those
ectodermic and mesodermic structures that are afterwards to be mainly
devoted to it: there is no sphere for the actions of these parts. Similarly
with the chief subdivisions of these fundamental functions. The distinction
first established separates the office of transforming other energy into
mechanical motion, from the office of liberating the energy to be so
transformed. While in the layer between endoderm and ectoderm are arising
the rudiments of the muscular system, there is marked out in the ectoderm
the rudiment of the nervous system. This indication of structures which are
to share between them the general duty of expending energy, is soon
followed by changes that foreshadow further specializations of this general
duty. In the incipient nervous system there begins to arise that contrast
between the cerebral mass and the spinal cord, which, in the main, answers
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