Experiments and Observations Relative to the Influence Lately Discovered by M. Galvani and Commonly Called Animal ElectricityFowler, Richard
Science
Experiments and Observations Relative to the Influence Lately Discovered by M. Galvani and Commonly Called Animal Electricity
Fowler, Richard
Electrophysiology -- Early works to 1800; Galvani, Luigi, 1737-1798
thus, by removing constraint, gave free play to their organization[8].
But from observing, that, in every other instance, where contractions
are produced by the mutual contact of the metals, a conducting
substance is interposed between them and the muscles, as well as
between them and the nerve; I think it would be unphilosophical not to
allow, that, in the instance in question, the moisture, adhering to the
surface of the nerve, formed that requisite communication between the
metals and the muscles.
I relate the following fact, in this place, because at the same time
that it gives further confirmation to the above opinion, it affords an
instance in which insulation diminished the effect of the metals. I had
one day laid the nearly exhausted leg of a frog upon my hand, with a
piece of zinc in contact with its nerve only; and, when I touched these
with a silver probe, tolerably strong contractions were excited, even
when the nerve appeared dry: but when both the leg and the metals, thus
disposed, were insulated by means of glass and sealing wax, the
contractions were scarcely perceptible. My hand, it would appear, had,
in these instances, supplied the place of the moisture in the other;
and been the conducting medium between the muscles and the metals.
This communication of the muscles with the nerve, through the medium of
the metals, had appeared to Dr Valli a circumstance so essential to the
production of Galvani’s phenomena, that (taking it for granted they
were occasioned by the action of the electrical fluid), it seems to
have suggested the hypothesis, which he has offered in order to account
for them.
Aware that no electrical phenomenon can possibly have place, except
between the opposite states of positive and negative electricity, or,
in other words, where there is a breach of equilibrium in the
distribution of the electrical fluid; he supposes it to be one office
of the nerves, to produce this breach of equilibrium, by continually
pumping (to use his own expression) the electrical fluid from the
internal parts of muscles, and in this way rendering them negative,
with respect to the external surface. The brain, he makes the common
receptacle for this fluid. The metals, he seems to consider in the
light of a conductor, interposed between the outside of muscles and
their nerves. And the rapid transmission of the fluid to restore the
equilibrium, as the cause of the contractions.
He presumes his hypothesis proved from the following considerations:
I. The interval which commonly takes place between the contractions;
which interval, according to him, is necessary for the restoration of
the breach of equilibrium.
II. From observing, that fishermen, in order to preserve their fish
from putridity, crush their brains; and thus, by interrupting the
medium between the external and internal surfaces of muscles, prevent
these repeated discharges of the electrical fluid, which, according to
Dr Valli, hastens their putridity.
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