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舟状骨和月骨韧带稳定结构的生物力学评估:第二部分。

Biomechanical evaluation of the ligamentous stabilizers of the scaphoid and lunate: Part II.

作者信息

Short Walter H, Werner Frederick W, Green Jason K, Masaoka Shunji

机构信息

Department of Orthopedic Surgery, Institute for Human Performance, State University of New York Upstate Medical University, 505 Irving Avenue, Syracuse, NY 13210, USA.

出版信息

J Hand Surg Am. 2005 Jan;30(1):24-34. doi: 10.1016/j.jhsa.2004.09.015.

Abstract

PURPOSE

This study is a continuation of our previous investigation of the ligaments stabilizing the scaphoid and lunate. We evaluated the effects of sectioning the scapholunate interosseous ligament, radioscaphocapitate ligament, and scaphotrapezial ligament in 3 sequences.

METHODS

Three sets of 8 cadaver forearms were placed in a wrist simulator and moved in continuous cycles of flexion-extension and radial-ulnar deviation. Kinematic data for the scaphoid and lunate were recorded for each wrist in the intact state, after the 3 ligaments were sectioned in various sequences and after the wrist was moved through 1,000 cycles of motion.

RESULTS

Sectioning only the scaphotrapezium ligament (ST) or the radioscaphocapitate ligament (RSC) resulted in minimal angular changes to the motion of the scaphoid and lunate. Sectioning of the scapholunate interosseous ligament (SLIL) or 1,000 cycles of repetitive wrist motion after ligament sectioning altered scaphoid and lunate kinematics.

CONCLUSIONS

Based on these findings it was concluded that the SLIL is the primary stabilizer and the RSC and ST are secondary stabilizers of the scapholunate articulation. Repetitive motion after ligament injury probably results in further carpal instability.

摘要

目的

本研究是我们先前对稳定舟骨和月骨的韧带进行调查的延续。我们按3种顺序评估了切断舟月骨间韧带、桡舟头韧带和舟大多角骨韧带的影响。

方法

将3组每组8具尸体的前臂置于腕关节模拟器中,并进行连续的屈伸和桡尺偏斜循环运动。记录每只手腕在完整状态下、按不同顺序切断3条韧带后以及手腕进行1000次循环运动后的舟骨和月骨的运动学数据。

结果

仅切断舟大多角骨韧带(ST)或桡舟头韧带(RSC)对舟骨和月骨的运动产生的角度变化极小。切断舟月骨间韧带(SLIL)或韧带切断后进行1000次重复性腕关节运动会改变舟骨和月骨的运动学。

结论

基于这些发现得出结论,舟月骨间韧带是舟月关节的主要稳定器,桡舟头韧带和舟大多角骨韧带是次要稳定器。韧带损伤后的重复性运动可能会导致腕关节进一步不稳定。

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