The Principles of Biology, Volume 1 (of 2) — John Shaqi
The Principles of Biology, Volume 1 (of 2)Spencer, Herbert
Science
The Principles of Biology, Volume 1 (of 2)
Spencer, Herbert
Biology
Much of the evidence is supposed to imply that this evolution of light,
like the evolution of heat, is consequent on oxidation of the tissues or of
matters contained in them. Light, like heat, is the expression of a raised
state of molecular vibration: the difference between them being a
difference in the rates of vibration. Hence it seems inferable that by
chemical action on substances contained in the organism, heat or light may
be produced, according to the character of the resulting molecular
vibrations. Some experimental evidence supports this view. In
phosphorescent insects, the continuance of the light is found to depend on
the continuance of respiration; and any exertion which renders respiration
more active, increases the brilliancy of the light. Moreover, by separating
the luminous matter, Prof. Matteucci has shown that its emission of light
is accompanied by absorption of oxygen and escape of carbonic acid. The
phosphorescence of marine animals has been referred to other causes than
oxidation; but it may perhaps be explicable without assuming any more
special agency. Considering that in creatures of the genus _Noctiluca_, for
example, to which the phosphorescence most commonly seen on our own coasts
is due, there is no means of keeping up a constant circulation, we may
infer that the movements of aerated fluids through their tissues, must be
greatly affected by impulses received from without. Hence it may be that
the sparkles visible at night when the waves break gently on the beach, or
when an oar is dipped into the water, are called forth from these creatures
by the concussion, not because of any unknown influence it excites, but
because, being propagated through their delicate tissues, it produces a
sudden movement of the fluids and a sudden increase of chemical action.
Nevertheless, in other phosphorescent animals inhabiting the sea, as in the
_Pyrosoma_ and in certain _Annelida_, light seems to be produced otherwise
than by direct re-action on the action of oxygen. Indeed, it needs but to
recall the now familiar fact that certain substances become luminous in the
dark after exposure to sunlight, to see that there are other causes of
light-emission.
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