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菲茨定律的皮质相关物。

Cortical correlates of fitts' law.

机构信息

Department of Biomedical Engineering, Duke University Durham, NC, USA.

出版信息

Front Integr Neurosci. 2011 Dec 22;5:85. doi: 10.3389/fnint.2011.00085. eCollection 2011.

Abstract

Fitts' law describes the fundamental trade-off between movement accuracy and speed: it states that the duration of reaching movements is a function of target size (TS) and distance. While Fitts' law has been extensively studied in ergonomics and has guided the design of human-computer interfaces, there have been few studies on its neuronal correlates. To elucidate sensorimotor cortical activity underlying Fitts' law, we implanted two monkeys with multielectrode arrays in the primary motor (M1) and primary somatosensory (S1) cortices. The monkeys performed reaches with a joystick-controlled cursor toward targets of different size. The reaction time (RT), movement time, and movement velocity changed with TS, and M1 and S1 activity reflected these changes. Moreover, modifications of cortical activity could not be explained by changes of movement parameters alone, but required TS as an additional parameter. Neuronal representation of TS was especially prominent during the early RT period where it influenced the slope of the firing rate rise preceding movement initiation. During the movement period, cortical activity was correlated with movement velocity. Neural decoders were applied to simultaneously decode TS and motor parameters from cortical modulations. We suggest that sensorimotor cortex activity reflects the characteristics of both the movement and the target. Classifiers that extract these parameters from cortical ensembles could improve neuroprosthetic control.

摘要

菲茨定律描述了运动准确性和速度之间的基本权衡

它指出,到达运动的持续时间是目标大小 (TS) 和距离的函数。虽然菲茨定律在人体工程学中得到了广泛的研究,并指导了人机界面的设计,但对其神经元相关性的研究甚少。为了阐明菲茨定律的感觉运动皮层活动,我们在两只猴子的初级运动 (M1) 和初级躯体感觉 (S1) 皮层中植入了多电极阵列。猴子用操纵杆控制光标向不同大小的目标进行伸展运动。反应时间 (RT)、运动时间和运动速度随 TS 而变化,M1 和 S1 的活动反映了这些变化。此外,皮层活动的改变不能仅用运动参数的改变来解释,而是需要 TS 作为附加参数。TS 的神经元表示在 RT 早期尤为突出,在此期间,它影响了运动起始前的放电率上升的斜率。在运动期间,皮层活动与运动速度相关。神经解码器被应用于从皮层调制中同时解码 TS 和运动参数。我们认为,感觉运动皮层的活动反映了运动和目标的特征。从皮层集合中提取这些参数的分类器可以改善神经假体控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e24b/3250970/245a02a816fa/fnint-05-00085-g001.jpg

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