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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Encoding and decoding target locations with waves in the turtle visual cortex
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Encoding and decoding target locations with waves in the turtle visual cortex

机译:用乌龟视觉皮层中的波对目标位置进行编码和解码

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Visual stimuli elicit waves of activity that propagate across the visual cortex of turtles. An earlier study showed that these waves encode information about the positions of stimuli in visual space. This paper addresses the question of how this information can be decoded from the waves. Windowing techniques were used to temporally localize information contained in the wave. Sliding encoding windows were used to represent waves of activity as low dimensional temporal strands in an appropriate space. Expanding detection window (EDW) or sliding detection window (SDW) techniques were combined with statistical hypothesis testing to discriminate input stimuli. Detection based on an EDW was more reliable than detection based on a SDW. Detection performance improved at a very early stage of the cortical response as the length of the detection window is increased. The property of intrinsic noise was explicitly considered. Assuming that the noise is colored provided a more reliable estimate than did the assumption of a white noise in the cortical output.
机译:视觉刺激引起在海龟的视觉皮层中传播的活动波。较早的研究表明,这些波编码有关视觉空间中刺激位置的信息。本文讨论了如何从电波中解码此信息的问题。使用开窗技术来临时定位波浪中包含的信息。滑动编码窗口用于将活动波表示为适当空间中的低维时间链。扩展检测窗口(EDW)或滑动检测窗口(SDW)技术与统计假设检验相结合,以区分输入刺激。基于EDW的检测比基于SDW的检测更可靠。随着检测窗口长度的增加,在皮质反应的非常早期阶段,检测性能得到了改善。明确考虑了固有噪声的属性。假设噪声是有色的,则提供比皮层输出中白噪声的假设更可靠的估计。

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