=The so-called Fusion of Sensations in Hearing.=--A very common way of
explaining the fact that waves which singly give no feeling of pitch
give one when recurrent, is to say that their several sensations _fuse
into a compound sensation_. A preferable explanation is that which
follows the analogy of muscular contraction. If electric shocks are sent
into a frog's sciatic nerve at slow intervals, the muscle which the
nerve supplies will give a series of distinct twitches, one for each
shock. But if they follow each other at the rate of as many as thirty a
second, no distinct twitches are observed, but a steady state of
contraction instead. This steady contraction is known as _tetanus_. The
experiment proves that there is a physiological cumulation or
overlapping of processes in the muscular tissue. It takes a twentieth of
a second or more for the latter to relax after the twitch due to the
first shock. But the second shock comes in before the relaxation can
occur, then the third again, and so on; so that continuous tetanus takes
the place of discrete twitching. Similarly in the auditory nerve. One
shock of air starts in it a current to the auditory brain-centre, and
affects the latter, so that a dry stroke of sound is heard. If other
shocks follow slowly, the brain-centre recovers its equilibrium after
each, to be again upset in the same way by the next, and the result is
that for each shock of air a distinct sensation of sound occurs. But if
the shock comes in too quick succession, the later ones reach the brain
before the effects of the earlier ones on that organ have died away.
There is thus an overlapping of processes in the auditory centre, a
physiological condition analogous to the muscle's tetanus, to which new
condition a new quality of feeling, that of pitch, directly corresponds.
This latter feeling is a new kind of sensation altogether, not a mere
'appearance' due to many sensations of dry stroke being compounded into
one. No sensations of dry stroke can exist under these circumstances,
for their physiological conditions have been replaced by others. What
'compounding' there is has already taken place in the brain-cells before
the threshold of sensation was reached. Just so red light and green
light beating on the retina in rapid enough alternation, arouse the
central process to which the sensation _yellow_ directly corresponds.
The sensations of red and of green get no chance, under such conditions,
to be born. Just so if the muscle could feel, it would have a certain
sort of feeling when it gave a single twitch, but it would undoubtedly
have a distinct sort of feeling altogether, when it contracted
tetanically; and this feeling of the tetanic contraction would by no
means be identical with a multitude of the feelings of twitching.
Public-domain text, read in full here on John Shaqi.
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