TY - JOUR
T1 - Integration of Noxious Stimulation Across Separate Somatosensory Communications Systems. A Functional Theory of Pain
AU - Algom, Daniel
AU - Raphaeli, Nehama
AU - Cohen-Raz, Lior
PY - 1986/2
Y1 - 1986/2
N2 - Functional measurement analyses and psychophysical techniques were used to assess how separate, cross-modal, aversive events are integrated in judgments of pain. Subjects made magnitude estimations of noxious stimuli produced by a 6 × 6 factorial design of electric shocks and loud tones. Group data and most of the individual results were consistent with a model of linear pain summation: The estimates of pain approximated the linear sum of the pain estimates of the individual electrocutaneous and auditory components. The relation between painful sensation and current intensity could be described by a mildly expansive power function with an exponent of about 1.1. Auditorily produced painful sensation related to sound pressure level by a mildly compressive power function with an exponent of about 0.90 as a representative figure. Results are interpreted in terms of a functional theory of pain. Noxious events are first transformed to psychological scale values via stimulus-specific psychophysical transfer functions. The outputs of these functions are then combined with other pain-related internal representations of either sensory or cognitive origin, according to simple algebraic models.
AB - Functional measurement analyses and psychophysical techniques were used to assess how separate, cross-modal, aversive events are integrated in judgments of pain. Subjects made magnitude estimations of noxious stimuli produced by a 6 × 6 factorial design of electric shocks and loud tones. Group data and most of the individual results were consistent with a model of linear pain summation: The estimates of pain approximated the linear sum of the pain estimates of the individual electrocutaneous and auditory components. The relation between painful sensation and current intensity could be described by a mildly expansive power function with an exponent of about 1.1. Auditorily produced painful sensation related to sound pressure level by a mildly compressive power function with an exponent of about 0.90 as a representative figure. Results are interpreted in terms of a functional theory of pain. Noxious events are first transformed to psychological scale values via stimulus-specific psychophysical transfer functions. The outputs of these functions are then combined with other pain-related internal representations of either sensory or cognitive origin, according to simple algebraic models.
UR - http://www.scopus.com/inward/record.url?scp=0022666469&partnerID=8YFLogxK
U2 - 10.1037/0096-1523.12.1.92
DO - 10.1037/0096-1523.12.1.92
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C2 - 2939194
AN - SCOPUS:0022666469
SN - 0096-1523
VL - 12
SP - 92
EP - 102
JO - Journal of Experimental Psychology: Human Perception and Performance
JF - Journal of Experimental Psychology: Human Perception and Performance
IS - 1
ER -