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正中神经的移位与牵张

Excursion and strain of the median nerve.

作者信息

Wright T W, Glowczewskie F, Wheeler D, Miller G, Cowin D

机构信息

University of Florida, Gainesville 32610, USA.

出版信息

J Bone Joint Surg Am. 1996 Dec;78(12):1897-903. doi: 10.2106/00004623-199612000-00013.

Abstract

Five fresh-frozen transthoracic cadaver specimens (ten upper extremities) were dissected in order to measure excursion and strain of the median nerve at the wrist and the elbow in association with different positions of the shoulder, elbow, wrist, and fingers. The relationships between motions of the joints and excursion and strain at the wrist and the elbow as well as between excursion and strain were also determined. When the wrist was moved from 60 degrees of extension to 65 degrees of flexion, the median nerve at the wrist underwent a mean total excursion of 19.6 millimeters (9.2 +/- 1.38 millimeters [mean and standard deviation] in extension and 10.4 +/- 1.50 millimeters in flexion). The change in strain was not measurable secondary to nerve-wrinkling. Motion of the fingers from hyperextension to full flexion caused a mean total excursion of 9.7 millimeters (6.3 +/- 1.31 millimeters in hyperextension and 3.4 +/- 1.04 millimeters in flexion) and a change in strain of 19.0 per cent. This change in strain became more pronounced when the wrist and the fingers moved in synergy. Such strain, if constant, has been shown to decrease microvascular perfusion and nerve conduction in rabbits. With motion of the shoulder, the mean total excursion of the median nerve at the elbow was 9.1 millimeters (4.4 +/- 1.64 millimeters in abduction and 4.7 +/- 1.81 millimeters in adduction) and the change in strain was 13.3 per cent. With motion of the elbow, the mean total excursion was 12.3 millimeters (12.3 +/- 4.20 millimeters in flexion and zero millimeters in the resting position) and the change in strain was not measurable because of the wrinkle effect in flexion. With motion of the wrist, the mean total excursion was 5.6 millimeters (4.3 +/- 1.95 millimeters in extension and 1.25 +/- 0.81 millimeters in flexion) and the change in strain was 14.8 per cent. With motion of the fingers, the mean total, excursion was 3.4 millimeters (2.6 +/- 1.13 millimeters in hyperextension and 0.80 +/- 0.92 millimeter in flexion) and the change in strain was 10.3 per cent. Motion of the wrist and the fingers induced profound excursion of the median nerve at the wrist, whereas motion of the shoulder and the elbow induced marked excursion of the median nerve at the elbow. These excursions were much more pronounced when a number of joints were moved in a composite manner. Any factor that might limit normal excursion, such as scarring, could induce strains that could adversely affect the function of the median nerve. The finding that the position and movement of the limb had a profound effect on excursion and strain of the median nerve at the wrist and the elbow may aid in the understanding of the pathophysiology of median-nerve neuropathy.

摘要

解剖了 5 个新鲜冷冻的经胸尸体标本(10 个上肢),以测量正中神经在腕部和肘部的移位及应变,同时观察肩部、肘部、腕部和手指处于不同位置时的情况。还确定了关节运动与腕部和肘部正中神经的移位及应变之间的关系,以及移位与应变之间的关系。当腕部从伸展 60 度移动到屈曲 65 度时,腕部的正中神经平均总移位为 19.6 毫米(伸展时为 9.2±1.38 毫米[平均值和标准差],屈曲时为 10.4±1.50 毫米)。由于神经起皱,应变变化无法测量。手指从过度伸展到完全屈曲的运动导致平均总移位为 9.7 毫米(过度伸展时为 6.3±1.31 毫米,屈曲时为 3.4±1.04 毫米),应变变化为 19.0%。当腕部和手指协同运动时,这种应变变化变得更加明显。研究表明,这种持续的应变会降低兔子的微血管灌注和神经传导。随着肩部运动,肘部正中神经的平均总移位为 9.1 毫米(外展时为 4.4±1.64 毫米,内收时为 4.7±1.81 毫米),应变变化为 13.3%。随着肘部运动,平均总移位为 12.3 毫米(屈曲时为 12.3±4.20 毫米,静止位时为 0 毫米),由于屈曲时的起皱效应,应变变化无法测量。随着腕部运动,平均总移位为 5.6 毫米(伸展时为 4.3±1.95 毫米,屈曲时为 1.25±0.81 毫米),应变变化为 14.8%。随着手指运动,平均总移位为 3.4 毫米(过度伸展时为 2.6±1.13 毫米,屈曲时为 0.80±0.92 毫米),应变变化为 10.3%。腕部和手指的运动引起腕部正中神经的明显移位,而肩部和肘部的运动引起肘部正中神经的明显移位。当多个关节以复合方式运动时,这些移位更为明显。任何可能限制正常移位的因素,如瘢痕形成,都可能导致应变,从而对正中神经的功能产生不利影响。肢体的位置和运动对腕部和肘部正中神经的移位及应变有深远影响这一发现,可能有助于理解正中神经病变的病理生理学。

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