首页> 外文会议>Engineering in Medicine and Biology Society, 2003. Proceedings of the 25th Annual International Conference of the IEEE >Context-dependence of the binocular VOR; an emerging property of brainstem circuit topology
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Context-dependence of the binocular VOR; an emerging property of brainstem circuit topology

机译:双眼VOR的上下文相关性;脑干电路拓扑的新兴特性

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The study of binocular control systems has unmasked several advantages linked to the topology of premotor neural networks. In the angular vestibulo-ocular reflex (VOR), there is a need to tune the gain of the reflex separately for each eye with head perturbations, depending on the distance and eccentricity of a visual target from the midsaggital plane of the head. The natural structural symmetry of the ocular premotor circuits can imbed the required changes in simultaneous vergence and conjugate components of the binocular VOR system. Here we demonstrate that including simple nonlinearities on the function of premotor cells in this symmetric circuit achieves the desired context-dependence for the binocular VOR. This approach allows very complex behaviors in response to sensory patterns without resorting to currently assumed complex cortical computations. The local premotor topology with its nonlinear properties can be sufficient for on-line reflex adaptation to behavioral context in the ocular system and has implications for other motor systems (such as stretch reflex modulation during rhythmic walking).
机译:双目控制系统的研究揭示了与运动前神经网络的拓扑结构相关的若干优点。在角前庭眼反射(VOR)中,需要根据视觉目标距头部中矢状平面的距离和偏心度,分别对每只眼睛进行头部微调,以调节反射的增益。眼前运动回路的自然结构对称性可以嵌入双眼VOR系统同时发散和共轭分量的所需变化。在这里,我们证明,在对称电路中包括前运动细胞功能的简单非线性可实现双目VOR的所需上下文相关性。该方法允许响应于感觉模式而具有非常复杂的行为,而无需借助当前假定的复杂皮层计算。具有其非线性特性的局部运动前拓扑足以使在线反射适应眼系统中的行为情境,并且对其他运动系统具有影响(例如在有节奏的步行过程中进行拉伸反射调制)。

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