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经腕管的第二蚓状肌和骨间肌潜伏期与正中神经功能标准测量值的比较:450只手的前瞻性研究

Comparison of second lumbrical and interosseus latencies with standard measures of median nerve function across the carpal tunnel: a prospective study of 450 hands.

作者信息

Löscher W N, Auer-Grumbach M, Trinka E, Ladurner G, Hartung H P

机构信息

Department of Neurology, Karl-Franzens University of Graz, Austria.

出版信息

J Neurol. 2000 Jul;247(7):530-4. doi: 10.1007/s004150070152.

DOI:10.1007/s004150070152
PMID:10993495
Abstract

The second lumbrical-interosseus distal motor latency (2LI-DML) was compared prospectively in 450 hands. Median nerve function was assessed by standard motor and sensory electrophysiological tests. In a control group of 100 hands the upper limit of normal for the 2LI-DML was 0.5 ms. In all hands studied the correlation coefficients of 2LI-DML were higher with sensory nerve tests than with motor studies. Carpal tunnel syndrome (CTS) was diagnosed clinically in 276 hands, and 174 showed no clinical signs of CTS. The 2LI-DML was prolonged in 269 of the 276 hands, with clinical signs of CTS and normal in 170 of 174 non-CTS hands. Thus the 2LI-DML resulted in a sensitivity of 97.5%. On the other hand, combining the standard tests yielded a sensitivity of 98.5 %. In 31 of 36 additional hands a lumbrical response was recorded, although motor and sensory responses form standard median nerve conduction studies were absent, and the 2LI-DML was substantially prolonged. The 2LI-DML therefore represents a highly sensitive, fast, easy-to-perform, and cost-efficient method to study median nerve function across the wrist and may help to localize the lesion in cases in which standard electrophysiological methods fail.

摘要

前瞻性地比较了450只手的第二蚓状肌-骨间肌远端运动潜伏期(2LI-DML)。通过标准运动和感觉电生理测试评估正中神经功能。在100只手的对照组中,2LI-DML的正常上限为0.5毫秒。在所有研究的手中,2LI-DML与感觉神经测试的相关系数高于与运动研究的相关系数。276只手临床诊断为腕管综合征(CTS),174只手无CTS临床体征。276只CTS临床体征阳性的手中,269只2LI-DML延长;174只非CTS手中,170只2LI-DML正常。因此,2LI-DML的敏感性为97.5%。另一方面,综合标准测试的敏感性为98.5%。在另外36只手中,有31只记录到了蚓状肌反应,尽管标准正中神经传导研究的运动和感觉反应缺失,且2LI-DML显著延长。因此,2LI-DML是一种研究腕部正中神经功能的高度敏感、快速、易于操作且经济高效的方法,在标准电生理方法失败的情况下可能有助于定位病变。

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