As the fact of this wonderfully rhythmic response to faradaic
irritation was quite unexpected by me, and as it seemed to be a fact
of great significance, I was led to investigate it in as many of its
bearings as time permitted. First, I tried the effect on the rhythm
of progressively intensifying the strength of the faradaic current. I
found that with each increment of the current the rate of the rhythm
was increased, and this up to the point at which the rhythm began to
pass into tetanus due to summation of the successive contractions.
But between the slowest rhythm obtainable by minimal stimulation and
the most rapid rhythm obtainable before the appearance of tetanus,
there were numerous degrees of rate to be observed. I here append
another tracing, to show the effect on the rate of the rhythm of
alterations in the strength of the current (Fig. 26).
It will also be observed from this tracing that, in consequence of
the current having been strengthened slightly beyond the limit within
which strictly rhythmic response was attainable, the curves in the
middle part of the tracing, where the current was strengthened, are
slightly irregular. This irregularity is, of course, due to the first
appearance of tumultuous tetanus. If the faradaic stimulation had in
this case been progressively made still stronger, the irregularity
would have become still more pronounced up to a certain point, when
it would gradually have begun to pass into more persistent tetanus.
But as in this case, instead of strengthening the current still
further, I again weakened it to its original intensity, the rhythm
immediately returned to its original rate and regularity.
Such being the facts, the question arises as to their interpretation.
At first I was naturally inclined to suppose that the artificial
rhythm was due to a periodic variation in the strength of the
stimulus, caused by some slight breach of contact between the
terminals and the tissue on each contraction of the latter. This
supposition, of course, would divest the phenomena in question of
all physiological meaning, and I therefore took pains in the first
instance to exclude it. This I did in two ways: first, by observing
that in many cases (and especially in Cyanæa capillata) the rate of
the rhythm is so slow that the contractions do not follow one another
till a considerable interval of total relaxation has intervened; and
second, by placing the terminals close together, so as to include
only a small piece of tissue between, and then firmly pinning the
tissue all round the electrodes to a piece of wood placed beneath the
Medusæ. In this way the small portion of tissue which served as the
seat of stimulation was itself prevented from moving, and therefore
the rhythmic motions which the rest of the Medusa presented cannot
have been due to any variations in the quality of the contact between
the electrodes and this stationary seat of stimulation.
Public-domain text, read in full here on John Shaqi.
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