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Processing of functional maps of the cat visual cortex obtained using intrinsic optical signals

机译:使用固有光信号获得的猫视觉皮层功能图的处理

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Functional structures of the primary visual cortex, particularly clearly apparent structures such as orientation columns, are studied by recording the brain's intrinsic optical signals. These reflect changes in local neuron metabolism and cerebral blood flow induced by functional loading. Despite the advantages of this method, mapping of neurons with weak signals can be hindered by noise generated by the global and local components of optical signals associated with physiological processes occurring in the body as well as equipment factors. This generates the need to correct functional optical maps to eliminate noise effects. The present report describes a new method of processing functional maps using approximations to identify and remove the global components of the optical signal and other interference from maps. The results are compared with data obtained by traditional map processing methods.
机译:通过记录大脑的内在光信号,研究了主要视觉皮层的功能结构,尤其是明显清晰的结构(例如方向列)。这些反映了功能负荷引起的局部神经元代谢和脑血流量的变化。尽管此方法具有优势,但与人体中发生的生理过程以及设备因素相关的光信号的全局和局部分量所产生的噪声可能会阻碍具有微弱信号的神经元的映射。这产生了校正功能光学图以消除噪声影响的需求。本报告介绍了一种使用近似值处理功能图的新方法,该方法可从图中识别并去除光信号的全局分量和其他干扰。将结果与通过传统地图处理方法获得的数据进行比较。

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