The Body at Work: A Treatise on the Principles of PhysiologyHill, Alex
Science
The Body at Work: A Treatise on the Principles of Physiology
Hill, Alex
Physiology
These chambers are piled into hexagonal columns,
which lie lengthwise in the organ (they are set dorso-ventrally in
Torpedo). Each chamber contains a jelly-like substance which embeds an
electric disc. The disc divides the chamber into a smaller anterior and
a larger posterior compartment. Each chamber is supplied with several
nerves which ramify into innumerable twigs on the front surface of
the disc. The development of the disc must be considered for a moment
if its structure is to be understood. It starts life looking as if it
would grow into a voluntary muscle-fibre. A nerve joins it, forming an
end-organ in the usual way. Then the end-organ increases its spread
unduly, while the rest of the fibre fails to grow. The structure
becomes toadstool-shaped, with the nerve arborizing on the seat of
the stool. The front aspect of the disc, therefore, corresponds to
a nerve-ending in a muscle. Its middle layer indicates clearly that
the fibre makes an abortive attempt to develop cross-striation. It is
laminated, the laminæ strangely contorted; in section they appear,
not as plain lines, but as rows of dots, evidently a suggestion of
longitudinal striation. The posterior layer of the disc consists
of granular protoplasm drawn out as a number of short backwardly
directed tongues, and one long process, the stem of the stool. No
structure could be more suggestive of the function of the organ; but
no one has as yet succeeded in catching the suggestion and pressing
it into a definite explanation of the way in which it works. Certain
physiologists, laying great stress on the fact that the functional
connections between an electric organ and its nerves are not easily
interrupted by the administration of curari, atropin, and other drugs,
which block the passage of impulses from nerves to muscles, look upon
the nerve-layer of the disc as the generator of electricity, and the
rest as an accumulator or resonator, which stores, or exaggerates,
the electric charge. Others consider that the portion of the disc
which is altered muscle-fibre—the middle, or middle and posterior
layers—generates the electromotive force, the nerve simply calling it
into activity. All agree that a brief interval (about 0·003 second)
elapses between the arrival of the nerve-impulse and the discharge of
an electric shock. This “latent period” may be used as an argument in
favour of either view. It would be in harmony with the general account
which we have already given of protoplasm as a liberator of energy
to suppose that a nerve-impulse, having reached a disc, immediately
infects the protoplasm of the disc, inducing molecular commotion,
and that the ions move in such directions as to disturb the electric
equilibrium of the disc, its front surface becoming in relation to the
back as zinc to copper in a battery. The current generated in the fish
is in the direction from head to tail. It is certain that the change
does not occur until an impulse reaches the organ. The organ is not
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