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对指向误差的分析揭示了中枢神经系统内数据表征和坐标转换的特性。

Analysis of pointing errors reveals properties of data representations and coordinate transformations within the central nervous system.

作者信息

McIntyre J, Stratta F, Droulez J, Lacquaniti F

机构信息

Scientific Institute S. Lucia, National Research Council, University of Rome Tor Vergata Rome, Italy.

出版信息

Neural Comput. 2000 Dec;12(12):2823-55. doi: 10.1162/089976600300014746.

Abstract

The execution of a simple pointing task invokes a chain of processing that includes visual acquisition of the target, coordination of multimodal proprioceptive signals, and ultimately the generation of a motor command that will drive the finger to the desired target location. These processes in the sensorimotor chain can be described in terms of internal representations of the target or limb positions and coordinate transformations between different internal reference frames. In this article we first describe how different types of error analysis can be used to identify properties of the internal representations and coordinate transformations within the central nervous system. We then describe a series of experiments in which subjects pointed to remembered 3D visual targets under two lighting conditions (dim light and total darkness) and after two different memory delays (0.5 and 5.0 s) and report results in terms of variable error, constant error, and local distortion. Finally, we present a set of simulations to help explain the patterns of errors produced in this pointing task. These analyses and experiments provide insight into the structure of the underlying sensorimotor processes employed by the central nervous system.

摘要

执行一个简单的指向任务会引发一系列处理过程,其中包括对目标的视觉获取、多模式本体感觉信号的协调,以及最终生成一个运动指令,该指令将驱动手指到达期望的目标位置。感觉运动链中的这些过程可以根据目标或肢体位置的内部表征以及不同内部参考框架之间的坐标变换来描述。在本文中,我们首先描述如何使用不同类型的误差分析来识别中枢神经系统内的内部表征和坐标变换的属性。然后,我们描述了一系列实验,在这些实验中,受试者在两种光照条件(暗光和完全黑暗)下以及两种不同的记忆延迟(0.5秒和5.0秒)后指向记忆中的三维视觉目标,并根据可变误差、恒定误差和局部失真来报告结果。最后,我们展示了一组模拟,以帮助解释该指向任务中产生的误差模式。这些分析和实验为深入了解中枢神经系统所采用的潜在感觉运动过程的结构提供了帮助。

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