The Principles of Biology, Volume 2 (of 2)Spencer, Herbert
Science
The Principles of Biology, Volume 2 (of 2)
Spencer, Herbert
Biology
these molecules will be ready again to undergo isomeric transformation
when there again occurs the stimulus; will, as before, propagate the
transformation most along the tract where such molecules are most
abundant; will, as before, tend to form new molecules of their own
type; will, as before, make the line along which they lie one of easier
transfer for the molecular agitation. Every repetition will help to
increase, to integrate, to define more completely, the course of the
escaping molecular motion--extending its remoter part while it makes
its nearer part more permeable--will help, that is, to form a line of
discharge, a line for conducting impressions, a nerve.
Such seems to me a not unfair series of deductions from the known
habitudes of colloids in general and the organic colloids in
particular. And I think that the implied nature and properties of nerve
correspond better with the observed phenomena than do the nature and
properties implied by other hypotheses. Of course the speculation as
it here stands is but tentative, and leaves much unexplained. It gives
no obvious reply to the questions--what causes the formation of nerves
in directions adapted to the needs? what determines their appropriate
connexions?--questions, however, to which, when we come to deal with
physiological integration, we may find not unsatisfactory answers.
Moreover it says nothing about the genesis of ganglia. A ganglion,
it is clear, must consist of a colloidal matter equally unstable, or
still more unstable, which, when disturbed, falls into some different
molecular arrangement, perhaps chemically simpler, and gives out in
so doing a large amount of molecular motion--serves as a reservoir of
molecular motion which may be suddenly discharged along an efferent
nerve or nerves, when excitement of an afferent nerve has disengaged
it. How such a structure as this results, the hypothesis does not show.
But admitting these shortcomings it may still be held that we are, in
the way pointed out, enabled to form some idea of the actions by which
nervous tissue is differentiated.
Public-domain text, read in full here on John Shaqi.
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