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Auditory evoked response and reaction time

Electroencephalography and Clinical Neurophysiology, 1967
Abstract Ten human subjects listened to auditory “clicks” coming in runs of 50, the inter-click intervals varying randomly between 1 and 3 see. In some runs the subjects ignored the clicks, in others they responded to each click as quickly as possible by pressing a key. Incentive was varied in the responding runs by payment at a flat rate or based on
R T, Wilkinson, H C, Morlock
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Reaction Time of the Tongue to Auditory and Tactile Stimulation

Perceptual and Motor Skills, 1965
Measures of reaction time of the tongue to tactile stimulation on the lips and to a 1000-cps tone at sensation levels of 10, 50, and 70 db were obtained from 26 normal young adults. Results revealed that tactile stimulation evoked the shortest reaction time ( M = .123 sec.); 70 db elicited slightly longer reaction time ( M = .129 sec.); 50 db still ...
B M, Siegenthaler, I, Hochberg
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Auditory reaction time and absolute threshold in cat

The Journal of the Acoustical Society of America, 1977
Reaction time and absolute thresholds for acoustic stimuli were measured in cats using an operant reaction-time procedure in conjunction with titration methodology. The reaction-time/titration procedure incorporated a self-paced feature and utilized a photobeam operandum developed for the cat.
G M, Gerken, D, Sandlin
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Correlation between Auditory Reaction Time and Intelligence

Perceptual and Motor Skills, 1986
Discriminative reaction times to auditory stimuli were measured for 150 students of the local Chinese population. Pearson's correlation with scores on the Standard Progressive Matrices and RTs was negative, becoming −0.30 when slower trials were eliminated.
P W, Poon, W Y, Yu, J W, Chan
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Evoked Potentials and Auditory Reaction Time in Monkeys

Science, 1969
Monkeys with bipolar stimulating and recording electrodes in primary auditory cortex were trained to release a key to the onset of a pure tone. Substitution of direct cortical stimulation for the pure tone resulted in a reduction of 15 milliseconds in the latency of the behavioral response.
J M, Miller, D B, Moody, W C, Stebbins
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Comparison of Electromyographic and Microswitch Measures of Auditory Reaction Time

Perceptual and Motor Skills, 1965
The RTs of 3 Ss to clicks at 10, 30 and 90 db above their individually measured thresholds were obtained. It was concluded that use of a microswitch for signalling motor response introduces a significant delay in comparison with an electromyographic measure. Large reliable individual differences in amount of switch lag were found.
L D, COSTA, H G, VAUGHAN, L, GILDEN
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Exercise effects on the time of reactions to auditory stimuli

European Journal of Applied Physiology and Occupational Physiology, 1977
Serial response to auditory stimuli administered during dynamic physical exercise of the steady-state and non-steady-state exhaustive nature was investigated in 61 athletes. Similarly to previous studies with serial visual stimuli, auditory reaction time was found to depend on the exercise load and grew in parallel to it.
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Choice Reaction Time: The Location of Auditory and Visual Similarity

The American Journal of Psychology, 1973
Each of eight subjects was visually presented four stimulus classes (pairs of letters combining high or low visual and high or low auditory similarity), each class at two locations of similarity (a pair of letters in a given class requiring the same or different responses).
D E, Clement, H L, Hawkins, K E, Hosking
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