=Reaction-time.=--The measurement of the time required for the discharge
is one of the lines of experimental investigation most diligently
followed of late years. Helmholtz led the way by discovering the
rapidity of the outgoing current in the sciatic nerve of the frog. The
methods he used were soon applied to sensory reactions, and the results
caused much popular admiration when described as measurements of the
'velocity of thought.' The phrase 'quick as thought' had from time
immemorial signified all that was wonderful and elusive of determination
in the line of speed; and the way in which Science laid her doomful hand
upon this mystery reminded people of the day when Franklin first
'_eripuit cœlo fulmen_,' foreshadowing the reign of a newer and
colder race of gods. I may say, however, immediately, that the phrase
'velocity of _thought_' is misleading, for it is by no means clear in
any of the cases what particular act of thought occurs during the time
which is measured. What the times in question really represent is the
total duration of certain _reactions upon stimuli_. Certain of the
conditions of the reaction are prepared beforehand; they consist in the
assumption of those motor and sensory tensions which we name the
expectant state. Just what happens during the actual time occupied by
the reaction (in other words, just what is added to the preëxistent
tensions to produce the actual discharge) is not made out at present,
either from the neural or from the mental point of view.
The method is essentially the same in all these investigations. A signal
of some sort is communicated to the subject, and at the same instant
records itself on a time-registering apparatus. The subject then makes a
muscular movement of some sort, which is the 'reaction,' and which also
records itself automatically. The time found to have elapsed between the
two records is the total time of that reaction. The time-registering
instruments are of various types. One type is that of the revolving drum
covered with smoked paper, on which one electric pen traces a line which
the signal breaks and the 'reaction' draws again; whilst another
electric pen (connected with a rod of metal vibrating at a known rate)
traces alongside of the former line a 'time-line' of which each
undulation or link stands for a certain fraction of a second, and
against which the break in the reaction-line can be measured. Compare
Fig. 49, where the line is broken by the signal at the first arrow, and
continued again by the reaction at the second. The machine most often
used is Hipp's chronoscopic clock. The hands are placed at zero, the
signal starts them (by an electric connection), and the reaction stops
them. The duration of their movement, down to 1000ths of a second, is
then read off from the dial-plates.
[Illustration: FIG. 49.]
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