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Rapid and precise retinotopic mapping of the visual cortex obtained by voltage-sensitive dye imaging in the behaving monkey.

机译:通过行为灵敏的猴子中的电压敏感染料成像获得的视觉皮层的快速和精确的视网膜位图绘制。

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Retinotopy is a fundamental organizing principle of the visual cortex. Over the years, a variety of techniques have been used to examine it. None of these techniques, however, provides a way to rapidly characterize retinotopy, at the submillimeter range, in alert, behaving subjects. Voltage-sensitive dye imaging (VSDI) can be used to monitor neuronal population activity at high spatial and temporal resolutions. Here we present a VSDI protocol for rapid and precise retinotopic mapping in the behaving monkey. Two monkeys performed a fixation task while thin visual stimuli swept periodically at a high speed in one of two possible directions through a small region of visual space. Because visual space is represented systematically across the cortical surface, each moving stimulus produced a traveling wave of activity in the cortex that could be precisely measured with VSDI. The time at which the peak of the traveling wave reached each location in the cortex linked this location with its retinotopic representation. We obtained detailed retinotopic maps from a region of about 1 cm(2) over the dorsal portion of areas V1 and V2. Retinotopy obtained during <4 min of imaging had a spatial precision of 0.11-0.19 mm, was consistent across experiments, and reliably predicted the locations of the response to small localized stimuli. The ability to rapidly obtain precise retinotopic maps in behaving monkeys opens the door for detailed analysis of the relationship between spatiotemporal dynamics of population responses in the visual cortex and perceptually guided behavior.
机译:视网膜检影是视觉皮层的基本组织原理。多年来,已使用多种技术对其进行检查。但是,这些技术都没有提供一种方法来快速表征行为灵敏的受试者在亚毫米范围内的视网膜检影。电压敏感染料成像(VSDI)可用于以高空间和时间分辨率监视神经元种群活动。在这里,我们提出了一个VSDI协议,用于在行为正常的猴子中快速准确地进行视网膜定位。两只猴子执行固定任务,而稀薄的视觉刺激则在一个较小的视觉空间区域内,以两个可能的方向之一周期性地高速扫过。由于视觉空间是系统地表示在整个皮质表面上的,因此每个运动刺激都会在皮质中产生活动的行进波,可以用VSDI精确测量。行波的波峰到达皮层中每个位置的时间将该位置与其视黄醛表示联系起来。我们从区域V1和V2的背面部分上约1 cm(2)的区域中获得了详细的视网膜定位图。在小于4分钟的成像过程中获得的视网膜检影的空间精度为0.11-0.19毫米,在整个实验中保持一致,并可靠地预测了对小局部刺激的反应位置。在行为猴子中快速获得精确的视网膜位置图的能力为详细分析视觉皮层中种群反应的时空动态与知觉行为之间的关系打开了大门。

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