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
Taking off the head of an animal, or intercepting, in any way, the
influence of its will upon the muscles of the part excited, has
precisely the same effect. But the will is not able to controul the
effects of electricity, when the electricity is otherwise sufficiently
strong to excite muscles to contraction. I have repeatedly found that
even by the strongest voluntary contractions of the muscles of my arm,
I have not been able altogether to counteract the involuntary ones,
produced by electrical sparks, nor have I found that frogs could ever
counteract them.
On attending carefully to the state of the muscles of the legs of
living frogs, at the instant the metals were applied, I could perceive
by the touch, that, in many frogs, though by no means in all, their
muscles were perfectly soft and relaxed: a proof that they have other
means of counteracting the involuntary contractions, which the metals
have a tendency to produce, besides keeping their muscles in a state of
permanent and voluntary contraction.
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Footnote 1:
Cavallo.
Footnote 2:
On this metal Cronstedt has the following very curious remark: “It
seems to become electrical by friction, and then its smaller
particles are attracted by the loadstone; which effects are not yet
properly investigated.” Zinc is an ingredient of the best amalgam for
smearing the rubbers of electrical machines: But I have not been able
to render a bar of zinc electrical by friction, nor to find that its
smaller particles were in any state attracted by the loadstone,
unless they had been scraped off by means of an instrument of iron.
But, in this way, the dust of any metal is rendered susceptible of
the influence of the loadstone.
Footnote 3:
If further experiments should establish decidedly, that the mutual
contact of two different metals is absolutely necessary for the
productions of Galvani’s phenomena, may not this circumstance afford
an useful test of the purity of the precious metals? For instance,
contractions in an animal produced by the contact of a piece of gold
or silver, whose purity we wish to ascertain, with a piece of the
same metal known to be pure, would then prove incontestably the
presence of alloy.
Footnote 4:
Public-domain text, read in full here on John Shaqi.
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