Thus, then, to summarize and conclude these observations, we have
seen that if a single stimulation, whether of a natural or artificial
kind, is supplied to the excitable tissues of a jelly-fish, a short
period, called the period of latency, will elapse, and then the
jelly-fish will give a single weak contraction. If, as soon as the
tissue has relaxed, the stimulation is again repeated, the period of
latency will be somewhat shorter, and will be followed by a somewhat
stronger contraction. Similarly, if the stimulation is repeated a
third time, the period of latency will be still shorter, and the
ensuing contraction still stronger. And so on up to nine or ten
times, when the period of latency will be reduced to its _minimum_,
while the force of the contraction will be raised to its _maximum_;
so that in the jelly-fish, the effect of a series of excitations
supplied at short intervals from one another is that of both arousing
the tissue into a state of increased _activity_, and also of
producing in it a state of greater _expectancy_. We have, moreover,
seen that this effect depends upon the repetition of the process of
stimulation, and not upon that of the process of contraction.
Now, effects very similar to these have been found to occur in the
case of the excitable plants by Dr. Burdon-Sanderson; in the case of
the frog's heart by Dr. Bowditch; and in the case of reflex action
of the spinal cord by Dr. Stirling. Indeed, the only difference in
this respect between these four tissues, so widely separated from one
another in the biological scale, consists in the _time_ which may be
allowed to elapse between the occurrence of the successive stimuli,
in order to produce this so-called summating effect of one stimulus
upon its successor: the _memory_, so to speak, of the heart-tissue
for the occurrence of a former stimulus being longer than the memory
of the jelly-fish tissue; while the memory of the latter is longer
than that of the plant tissue. And I may here add that even in our
own organization we may often observe the action of this principle of
the summation of stimuli. For instance, we can tolerate for a time
the irritation caused by a crumb in the larynx, but very rapidly
the sense of irritation accumulates to a point at which it becomes
impossible to avoid coughing. And similarly with tickling generally,
the convulsive reflex movements to which it gives rise become more
and more incontrollable the longer the stimulation is continued,
until they reach a _maximum_ point, where, in persons susceptible
to this kind of stimulation, the muscular action passes completely
beyond the power of the will. Lastly, I may further observe, what I
do not think has ever been observed before, that even in the domain
of psychology the action of this principle admits of being clearly
traced. We find it, for instance, in the rhythmical waves of emotion
characteristic of grief, and at the other extreme we find it in the
case of the ludicrous.
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