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Development of Target Reaching Gesture Map in the Cortex and Its Relation to the Motor Map: A Simulation Study

机译:在皮层中的目标到达手势地图的发展及其与电机地图的关系:模拟研究

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The motor maps in the cortex are topologically organized, just like the sensory cortical maps, where nearby locations in the map represent behaviors of similar kinds. However, there is not much research on how such motor maps are formed. In this paper, as a first step in this direction, we developed a target reaching gesture map using a selforganizing map model of cortical development (the GCAL model, a simplified yet enhanced version of the LISSOM model). The inputs were target reaching behavior of a two-joint arm on a 2D plane (2 DOF), encoded as a time-lapse image where time was encoded as the pixel intensity. For training, 20,000 random arm movements were generated where each arm movement started at a random initial location and moved toward one of 24 predefined target locations. The resulting gesture map showed global topological order where nearby neurons represented gestures toward nearby target locations, comparable to the motor map reported in the experimental literature. Although our simulations were based on a sensory cortical map development framework, the results suggest that it could be easily adapted to transition into motor map development. Our work is an important first step toward a fully motor-based motor map development (e.g. using proprioceptive input), and we expect the findings reported in this paper to help us better understand the general nature of cortical map development, not just for the sensory but also for the motor modality.
机译:在皮质电机映射拓扑组织,就像感觉皮质地图,其中地图附近的位置代表类似的各种行为。然而,没有对如何形成这种电机的地图很多研究。在本文中,如在此方向上的第一步骤中,我们开发了使用皮质发展的自组织地图模型(GCAL模型中,轻盈模型的简化又增强版)的目标到达手势映射。输入是目标在二维平面(2 DOF),编码为其中时间被编码为像素强度的隔时图像到达两节臂的行为。对于训练,产生20000分随机手臂的动作,其中每个臂的运动开始在一个随机的初始位置和朝向的24个预定义的目标位置中的一个移动。将所得的手势映射表明其中邻近神经元表示朝向附近的目标位置,可比在实验文献中报道的电机映射手势全局拓扑顺序。虽然我们的模拟是基于一种感觉皮质地图的发展框架,结果表明,它可以很容易地适应过渡到电机地图的发展。我们的工作是向完全基于电动马达地图发展的重要的第一步(例如,使用本体输入),我们期望的结果本文报道,帮助我们更好地了解皮质地图发展的一般性质,而不仅仅是感官同时也为电机模式。

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