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指总伸肌个体化表面肌电图及神经假体均匀电刺激的解剖学基础。

Anatomic basis for individuated surface EMG and homogeneous electrostimulation with neuroprostheses of the extensor digitorum communis.

作者信息

Leijnse J N A L, Carter S, Gupta A, McCabe S

机构信息

Department of Mechanical Engineering, Speed School of Engineering, University of Louisville, Louisville, Kentucky 40292, USA.

出版信息

J Neurophysiol. 2008 Jul;100(1):64-75. doi: 10.1152/jn.00706.2007. Epub 2008 May 7.

DOI:10.1152/jn.00706.2007
PMID:18463189
Abstract

The extensor digitorum communis (ED) is generally regarded as a fairly undiversified muscle that gives extensor tendons to all fingers. Some fine wire electromyographic (EMG) investigations have been carried out to study individuation of the muscle parts to the different fingers. However, individuated surface EMG of the ED has not been investigated. This study analyses the anatomy of the ED muscle parts to the different fingers in detail and proposes optimal locations for surface or indwelling electrodes for individuated EMG and for electrostimulation with neuroprostheses. The dissections show that the ED arises from extensive origin tendons (OT), which originate at the lateral epicondyle and reach far in the forearm. The ED OT is V-shaped with shorter central tendon fibers but with a long radial and an even longer ulnar slip. The ED parts to the individual fingers consistently arise from distinct OT locations: the ED3 (medius) arises proximally, the ED2 (index) from the radial slip distal to ED3, the ED4 (ring finger) from the ulnar slip distal to ED3, and the ED5 (to ring/little finger) from the ulnar slip distal to ED4. This lengthwise widely spaced arrangement of ED parts compensates to some degree for the narrow ED width and suggests that ED parts should be individually assessable by indwelling and even by surface EMG electrodes, albeit in the latter case with variable mutual cross-talk. Conversely, the anatomic spacing of ED parts warrants that electromyographic stimulation with neuroprostheses by a single implanted electrode cannot likely homogeneously activate all ED parts.

摘要

指总伸肌(ED)通常被认为是一块功能相当单一的肌肉,它为所有手指提供伸肌腱。已经进行了一些精细的肌电图(EMG)研究来探究该肌肉不同部分与不同手指的对应关系。然而,尚未对ED的个体化表面肌电图进行研究。本研究详细分析了ED肌肉不同部分与不同手指的解剖结构,并提出了用于个体化肌电图和神经假体电刺激的表面或植入电极的最佳位置。解剖显示,ED起自广泛的起始腱(OT),该起始腱起源于外侧髁并在前臂延伸较远。ED的OT呈V形,中央腱纤维较短,但桡侧束较长,尺侧束更长。ED与各个手指对应的部分始终起源于不同的OT位置:ED3(中指)起源于近端,ED2(食指)起源于ED3远端的桡侧束,ED4(无名指)起源于ED3远端的尺侧束,ED5(无名指/小指)起源于ED4远端的尺侧束。ED各部分在长度上的这种广泛间隔排列在一定程度上弥补了ED较窄的宽度,这表明ED的各个部分可以通过植入电极甚至表面肌电图电极进行单独评估,尽管在后一种情况下存在可变的相互串扰。相反,ED各部分的解剖间隔保证了通过单个植入电极进行神经假体肌电图刺激不太可能均匀地激活所有ED部分。

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