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首页> 外文期刊>Journal of Neurophysiology >Auditory modulation of spiking activity and local field potentials in area MT does not appear to underlie an audiovisual temporal illusion
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Auditory modulation of spiking activity and local field potentials in area MT does not appear to underlie an audiovisual temporal illusion

机译:尖峰活动的听觉调节和面积MT的当地场势不会呈现视听时间错觉

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The timing of brief stationary sounds has been shown to alter the perceived speed of visual apparent motion (AM), presumably by altering the perceived timing of the individual frames of the AM stimuli and/or the duration of the interstimulus intervals (ISIs) between those frames. To investigate the neural correlates of this "temporal ventriloquism" illusion, we recorded spiking and local field potential (LFP) activity from the middle temporal area (area MT) in awake, fixating macaques. We found that the spiking activity of most MT neurons (but not the LFP) was tuned for the ISI/speed (these parameters covaried) of our AM stimuli but that auditory timing had no effect on that tuning. We next asked whether the predicted changes in perceived timing were reflected in the timing of neuronal responses to the individual frames of the AM stimuli. Although spiking dynamics were significantly, if weakly, affected by auditory timing in a minority of neurons, the timing of spike responses did not systematically mirror the predicted perception of stimuli. Conversely, the duration of LFP responses in beta- and gamma-frequency bands was qualitatively consistent with human perceptual reports. We discovered, however, that LFP responses to auditory stimuli presented alone were robust and that responses to audiovisual stimuli were predicted by the linear sum of responses to auditory and visual stimuli presented individually. In conclusion, we find evidence of auditory input into area MT but not of the nonlinear audiovisual interactions we had hypothesized to underlie the illusion.
机译:简要静止声音的定时已经被那些之间所示,推测是通过改变AM刺激和/或刺激间的间隔(ISIS)的持续时间的各个帧的感知定时来改变视觉表观运动(AM)的感知速度帧。为了研究这个“时间口技”的错觉的神经相关,我们录扣球和局部场电位(LFP)的清醒,固定猕猴从中间颞区(区域MT)的活动。我们发现,大多数神经元MT(但不是LFP)的扣球活性调整为ISI /转速(这些参数的共变的)我们的AM刺激但听觉时机已经对调整没有影响。接下来,我们问感知时间的预测变化是否反映在向AM刺激的个别帧神经元的反应时间。虽然扣球动力学在神经元中的少数人通过听觉时序显著,如果弱,受此影响,尖峰响应的时间没有系统地反映刺激的预测看法。相反,在β-和γ-频段LFP响应时间是与人类的知觉报告定性一致。然而,我们发现的是,听觉刺激LFP反应呈现独显健壮,视听刺激的是反应进行了响应的听觉和视觉刺激的线性和预测中单独列示。总之,我们发现听觉输入的证据转化为区域MT但不是非线性相互作用视听我们所推测背后的错觉。

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