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Direction without speed information process in the human brain: a magnetoencephalographic study using random dots apparent motion stimulus

机译:人脑中没有速度信息过程的方向:使用随机点视在运动刺激的磁脑图研究

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Apparent motion stimulus induces visual perception of smooth motion even though there is no speed information. We examined whether human brain response as measured by magnetoencephalography carries direction information in the visually presented apparent motion of a randomdot pattern in a similar manner as continuous motions that have speed and direction information. Although there was no significant effect of motion direction on the peak response latency and amplitude, mutual information entropy (IE) significantly increased after the motion onset at approximately 36 ms after the response latency in 41% of the evaluations. Detailed analysis of the data from five subjects who participated in both the present apparent motion and our previous coherent motion studies revealed that the maximum IE latency (delay) for apparent motion was significantly longer than that for coherent motion, although the mean maximum IE was the same. The results indicate that direction is represented in the response waveform evoked by apparent motion but the manner is different from that for coherent motion probably due to the distinct neural processes engaged only for the apparent motion perception. We consider that direction and speed can be processed separately in the human brain because direction information was generated without speed information for the perception of apparent motion.
机译:即使没有速度信息,视在运动刺激也会引起视觉上对平稳运动的感知。我们检查了通过脑磁图测量的人脑反应是否以与具有速度和方向信息的连续运动类似的方式在视觉上呈现的随机点模式的明显运动中携带了方向信息。尽管运动方向对峰值响应潜伏期和幅度没有显着影响,但在41%的评估中,在响应潜伏期后约36 ms运动开始后,互信息熵(IE)显着增加。对参与当前视运动和我们先前的相干运动研究的五名受试者的数据进行的详细分析显示,尽管平均最大IE为,但视运动的最大IE延迟(延迟)明显长于相干运动的IE延迟(延迟)。相同。结果表明方向在视在运动引起的响应波形中表示,但方式与相干运动不同,这可能是由于仅针对视在运动感知而参与的独特神经过程所致。我们认为方向和速度可以在人脑中单独处理,因为方向信息是在没有速度信息的情况下生成的,因此无法感知视在运动。

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