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Separation of traveling waves in cortical networks using optical imaging

机译:使用光学成像分离皮层网络中的行波

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This paper introduces a mathematical model of the spatio-temporal patterns of visually evoked activity observed using Voltage-Sensitive Dye Imaging (VSDI) of the visual cortex. The cortical activity is described using a linear superposition of waves traveling with different speeds. This model improves the quality of the wave detection and still respects the previous approaches, as it integrates several biologically plausible constraints: 1) separability of the sources in terms of cortical location; 2) separability of the waves in terms of propagation speed, and 3) additivity of the depolarizing effects of the waves. Under these assumptions, a traveling component analysis algorithm performs a full separation of the set of waves and recovers the locations of the neural sources. Both features could help to better understand the dynamics of evoked activity in cortical sensory networks.
机译:本文介绍了使用视觉皮层的电压敏感染料成像(VSDI)观察到的视觉诱发活动的时空模式的数学模型。使用以不同速度传播的波的线性叠加来描述皮层活动。该模型集成了几个生物学上合理的约束条件,因此提高了波检测的质量,并且仍然遵循以前的方法:1)在皮质位置上可分离源; 2)就传播速度而言,波的可分离性,以及3)波的去极化效应的可加性。在这些假设下,行进分量分析算法对波组进行了完全分离,并恢复了神经源的位置。这两个功能都可以帮助更好地了解皮层感觉网络中诱发活动的动态。

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