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Bimodal and trimodal multisensory enhancement: Effects of stimulus onset and intensity on reaction time

机译:双峰和三峰多感觉增强:刺激发作和强度对反应时间的影响

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摘要

Manual reaction times to visual, auditory, and tactile stimuli presented simultaneously, or with a delay, were measured to test for multisensory interaction effects in a simple detection task with redundant signals. Responses to trimodal stimulus combinations were faster than those to bimodal combinations, which in turn were faster than reactions to unimodal stimuli. Response enhancement increased with decreasing auditory and tactile stimulus intensity and was a U-shaped function of stimulus onset asynchrony. Distribution inequality tests indicated that the multisensory interaction effects were larger than predicted by separate activation models, including the difference between bimodal and trimodal response facilitation. The results are discussed with respect to previous findings in a focused attention task and are compared with multisensory integration rules observed in bimodal and trimodal superior colliculus neurons in the cat and monkey.
机译:同时测量视觉,听觉和触觉刺激的手动反应时间,或延迟,以简单的检测任务和冗余信号测试多感官相互作用的影响。对三峰刺激组合的响应要快于对双峰组合的响应,而对双峰组合的响应要快于对单峰刺激的响应。反应增强随着听觉和触觉刺激强度的降低而增加,并且是刺激发作异步性的U形函数。分布不均等测试表明,多感官相互作用的影响大于单独激活模型预测的结果,包括双峰和三峰响应促进之间的差异。该结果是针对先前在集中注意力任务中的发现进行讨论的,并与在猫和猴的双峰和三峰上丘神经元中观察到的多感觉整合规则进行了比较。

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