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首页> 外文期刊>生体医工学 >視覚誘発電位と脳磁図を用いた,運動定義形状知覚の処理機序の解析
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視覚誘発電位と脳磁図を用いた,運動定義形状知覚の処理機序の解析

机译:采用视觉诱导潜力和脑磁图分析运动定义形状感知的处理机制

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Motion-defined pattern perception includes two perceptions: motion and pattern perception. The purpose of this study was to clarify the difference in time courses and activated areas between motion detection and pattern perception. Psychophysical experiments were carried out by employing a random dot kinematogram to ask the direction of a coherently moving dot in a core rectangle toward upper left or lower right (a direction discrimination task), and the shape of that rectangle oblong vertically or horizontally (a pattern discrimination task) by varying dot velocity in four levels (14.4, 28.8, 43.2 and 57.6 deg/s). When the stimuli were presented in the lower half of visual field, the mean correct rate of ten participants for both motion and pattern was larger than 0.75 (the psychophysical threshold of perception) at the velocity of 14.4 deg/s, whereas at the velocity of 43.2 deg/s, only that of motion perception exceeded the threshold. When the magneto-encephalogram (MEG) and visual evoked potential (VEP) were measured with similar stimuli, the root mean square (RMS) of MEG difference between 14.4 deg/s and 43.2 deg/s was explicitly elevated at the latency from 250 ms to 290 ms. This result was consistent with those in the previous study, demonstrating that the peak of VEP at around 290 ms were a common phenomenon elicited by every type of figure perception. The multi dipole (2-dipoles) estimation of MEG at this latency revealed that the activated areas for the pattern perception were located in both ventral and dorsal portions of the occipital cortex, while the motion perception activated the dorsal portion of occipital cortex alone.
机译:运动定义的模式感知包括两个看法:运动和模式感知。本研究的目的是阐明运动检测和模式感知之间的时间课程和激活区域的差异。通过采用随机点血管库进行心理物理实验,以便在左上或右下(方向辨别任务)中的芯矩形中的相干移动点的方向,以及垂直或水平的矩形椭圆形的形状(图案通过四个级别的点速度(14.4,28.8,43.2和57.6 deg / s)来辨别任务。当刺激呈现在视野的下半部分时,在速度为14.4°的速度下,运动和图案的十个参与者的平均正确率大于0.75(感知的心理物理学阈值),而在速度下43.2°DEG / s,仅超出运动感知的阈值。当用类似的刺激测量磁性脑图(MEG)和视觉诱发电位(VEP)时,在250毫秒的延迟下明确地升高了14.4℃和43.2deg / s之间的MEG差异的均方根(RMS)到290毫秒。该结果与前一项研究中的结果一致,表明VEP的峰值约为290毫秒,是各种数种类型感知引发的常见现象。 MEG在这种潜伏期的多偶极子(2-偶极子)估计显示,图案感知的激活区域位于枕骨皮质的腹侧和背部,而运动感知仅激活枕骨皮质的背部。

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