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A simple method for creating wide-field visual stimulus for electrophysiology: Mapping and analyzing receptive fields using a hemispheric display

机译:用于电生理学的宽场视觉刺激的简单方法:使用半球显示器的映射和分析接收领域

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Modern neurophysiological and psychophysical studies of vision are typically based on computer-generated stimuli presented on flat screens. While this approach allows precise delivery of stimuli, it suffers from a fundamental limitation in terms of the maximum achievable spatial coverage. This constraint becomes important in studies that require stimulation of large expanses of the visual field, such as those involving the mapping of receptive fields throughout the extent of a cortical area or subcortical nucleus, or those comparing neural response properties across a wide range of eccentricities. Here we describe a simple and highly cost-effective method for the projection of computer-generated stimuli on a hemispheric screen, which combines the advantages of computerized control and wide-field (100?° ?? 75?°) delivery, without the requirement of highly specialized hardware. The description of the method includes programming techniques for the generation of stimuli in spherical coordinates and for the quantitative determination of receptive field sizes and shapes. The value of this approach is demonstrated by quantitative electrophysiological data obtained in the far peripheral representations of various cortical areas, including automated mapping of receptive field extents in cortex that underwent plasticity following lesions.
机译:现代神经生理学和视力的心理物理学研究通常基于扁平屏幕上呈现的计算机生成的刺激。虽然这种方法允许精确地递送刺激,但它在最大可实现的空间覆盖范围内遭受基本限制。该约束在需要刺激大片视野的研究中变得重要,例如涉及在皮质区域或皮质区域的范围内的接受场的映射的那些,或者比较各种偏心的神经应答性能的那些。在这里,我们描述了一种简单且高度成本效益的方法,用于在半球屏幕上投射计算机生成的刺激,这将计算机化控制和宽场(100?°(100Ω→75°)交付的优点相结合,而无需要求高度专业化的硬件。该方法的描述包括用于在球形坐标中产生刺激的编程技术,以及用于定量确定接收场尺寸和形状的定量确定。通过在各种皮质区域的远外周表示中获得的定量电生理数据证明了这种方法的值,包括在皮质中的接受场范围的自动映射,其在病变之后进行可塑性。

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