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首页> 外文期刊>Clinical neurophysiology >Optimum stimulus size for the human brain to respond to motion: a magnetoencephalographic study.
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Optimum stimulus size for the human brain to respond to motion: a magnetoencephalographic study.

机译:人体对运动做出反应的最佳刺激大小:磁脑图研究。

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摘要

OBJECTIVE: To determine if there is an optimum spatial extent for the detection of moving objects in humans. METHODS: We investigated human brain responses to motion at various speeds (2.9-23.5 deg/s) and stimulus sizes (2.2 x 2.9 deg to 44.8 x 57.4 deg) using magnetoencephalography. The results were compared with those for the flickers with the same stimulus sizes and temporal frequencies. RESULTS: For every size, response latency was inversely related to speed. Further, the latency was lowest at a stimulus size of 16.8 x 22.4 deg for every speed. Although response latency was inversely related to the temporal frequency of the flicker stimulation for all stimulus sizes, it was not affected by stimulus size as much as motion stimulus. CONCLUSIONS: For visual motion detection, the most efficient stimulus size is around 16.8 x 22.4 deg. SIGNIFICANCE: The results suggest that spatial summation mechanism is important for the detection of visual motion but a loss of reference frame information affects the detection of larger motion stimuli, supporting the view that illusory self-motion (vection) is caused by poor reference frame information for motion detection.
机译:目的:确定是否存在检测人类运动物体的最佳空间范围。方法:我们使用脑磁图技术研究了人脑对各种速度(2.9-23.5 deg / s)和刺激大小(2.2 x 2.9 deg至44.8 x 57.4 deg)的运动的反应。将结果与具有相同刺激大小和时间频率的闪烁的结果进行比较。结果:对于每种尺寸,响应潜伏期与速度成反比。此外,对于每种速度,潜伏时间在刺激大小为16.8 x 22.4度时最低。尽管对于所有刺激大小,响应潜伏期与闪烁刺激的时间频率成反比,但与运动刺激一样,它不受刺激大小的影响。结论:对于视觉运动检测,最有效的刺激大小约为16.8 x 22.4度。意义:结果表明,空间求和机制对于视觉运动的检测很重要,但是丢失参考框架信息会影响较大运动刺激的检测,从而支持以下观点:虚假的自运动(运动)是由较差的参考框架信息引起的用于运动检测。

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