The Principles of Biology, Volume 2 (of 2)Spencer, Herbert
Science
The Principles of Biology, Volume 2 (of 2)
Spencer, Herbert
Biology
§ 303. A speculation akin to, and continuous with, the last,
is suggested by an inquiry into the origin of muscular tissue.
Contractility as well as irritability is a property of protoplasm
or sarcode; and, as before suggested (§ 22), is not improbably
due to isomeric change in one or more of its component colloids.
It is a feasible supposition that of the several isomeric changes
simultaneously set up among these component colloids, some may be
accompanied by change of bulk and some not. Clearly the isomeric
change undergone by the colloid which we suppose to form nerve, must
be one not accompanied by appreciable change of bulk; since change of
bulk implies “internal work,” as physicists term it, and therefore
expenditure of force. Conversely, the colloid out of which muscle
originates, may be one that readily passes into an isomeric state
in which it occupies less space: the molecular disturbance causing
this contraction being communicated to it from adjacent portions of
nerve-substance that are molecularly disturbed; or being otherwise
communicated to it by direct mechanical or chemical stimuli: as happens
where nerves do not exist, or where their influence has been cut off.
This interpretation seems, indeed, to be directly at variance with
the fact that muscle does not diminish in bulk during contraction
but merely changes its shape. That which we see take place with the
muscle as a whole, is said also to take place with each fibre--while
it shortens it also broadens. There is, however, a possible solution
of this difficulty. A contracting colloid yields up its water; and
the contracted colloid _plus_ the free water, may have the same bulk
as before though the colloid has less. If it be replied that in this
case the water should become visible between the substance of the
fibre and its sarcolemma or sheath, it may be rejoined that this
is not necessary--it may be deposited interstitially. Possibly the
striated structure is one that facilitates its exudation and subsequent
re-absorption; and to this may be due the superiority of striated
muscle in rapidity of contraction. Granting the speculative character
of this interpretation, let us see how far it agrees with the facts.
If the actions are as here supposed, the contracted or more integrated
state of the muscular colloid will be that which it tends continually
to assume--that into which it has an increasing aptitude to pass when
artificial paralysis has been produced, as shown by Dr. Norris--that
into which it lapses completely in _rigor mortis_. The sensible motion
generated by the contraction can arise only from the transformation
of insensible motion. This insensible motion suddenly yielded up by
a contracting mass, implies the fall of its component molecules into
more stable arrangements. And there can be no such fall unless the
previous arrangement is unstable. From this point of view, too, it is
possible to see how the hydro-carbons and carbo-hydrates consumed in
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