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首页> 外文期刊>Vision Research: An International Journal in Visual Science >Response characteristics of the normal retino-cortical pathways as determined with simultaneous recordings of pattern visual evoked potentials and simple motor reaction times.
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Response characteristics of the normal retino-cortical pathways as determined with simultaneous recordings of pattern visual evoked potentials and simple motor reaction times.

机译:通过同时记录模式视觉诱发电位和简单的运动反应时间确定的正常视网膜-皮层通路的响应特征。

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PURPOSE: In an attempt to explain the existing discrepancies regarding the relationship between electrophysiological and psychophysical measurements of visual transmission time we compared, in humans, the response characteristics of the normal retino-cortical pathways with simultaneously obtained pattern visual evoked potentials (PVEP) and simple motor reaction times (RT). METHODS: PVEPs and manual RTs were recorded simultaneously using a reversing checkerboard with different spatial frequency and contrast combinations chosen to elicit responses favoring the magnocellular or parvocellular pathways. The amplitude and peak time of the P1 wave of the PVEP were compared to the mean RT. Other parameters of the RT, such as mode and standard deviation were also considered. RESULTS: The RT is not modified in the same fashion as the peak time of the P1 wave of the PVEP, the peak time of the PVEP demonstrating a spatial frequency selectivity, while the RT does not. Further comparative analysis of the PVEP and RT shows that the RT is faster for stimuli of lower contrast and spatial frequency, while the PVEP amplitude is larger and its peak time shorter for higher contrast and spatial frequency stimuli. CONCLUSIONS: Our findings suggest that PVEP and RT measures recruit distinct physiological characteristics and appear to be differently modulated while travelling along the retino-cortical pathway. Our results also show the importance of obtaining electrophysiological and psychophysical measures concomitantly to insure elimination of combined inter-stimulus and inter-session variability.
机译:目的:为了解释关于视觉传递时间的电生理和心理生理测量之间的关系的现有差异,我们在人类中比较了正常视网膜-皮层通路的反应特征,同时获得了模式视觉诱发电位(PVEP)和简单电机反应时间(RT)。方法:PVEPs和手动RTs同时使用具有不同空间频率和对比组合的反转棋盘记录下来,以引起有利于大细胞或小细胞途径的反应。将PVEP的P1波的幅度和峰值时间与平均RT进行比较。还考虑了RT的其他参数,例如模式和标准偏差。结果:RT的修改方式与PVEP的P1波的峰值时间不同,PVEP的峰值时间表明空间频率选择性,而RT则没有。对PVEP和RT的进一步比较分析表明,对于较低对比度和空间频率的刺激,RT更快,而对于较高对比度和空间频率的刺激,PVEP幅度较大,其峰值时间较短。结论:我们的研究结果表明PVEP和RT措施招募不同的生理特征,并沿着视网膜皮层途径旅行时似乎受到不同的调节。我们的研究结果还表明,必须同时获得电生理和心理物理措施,以确保消除相互刺激和会话间的可变性。

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