Gabra Joseph N, Gordon Joshua L, Marquardt Tamara L, Li Zong-Ming
Hand Research Laboratory, Departments of Biomedical Engineering, Orthopaedic Surgery, and Physical Medicine and Rehabilitation, Cleveland Clinic, Ohio 9500 Euclid Avenue, ND20, Cleveland, OH 44195, United States .
Med Eng Phys. 2016 Oct;38(10):1055-62. doi: 10.1016/j.medengphy.2016.06.023. Epub 2016 Jul 9.
The transverse carpal ligament (TCL) is a component of the flexor pulley system of the wrist, keeping the flexor tendons in place by resisting their volar displacement. The purpose of this study was to investigate the in vivo biomechanical interaction between the TCL and flexor tendons in response to tendon tensioning with the wrist at various postures. In eight healthy subjects, the flexor digitorum superficialis and profundus tendons were tensioned by isometrically applying loads (5, 10, and 15N) to the index finger while the wrist posture was at 20° extension, neutral, 20° flexion, and 40° flexion. The TCL and flexor tendons were imaged at the distal carpal tunnel cross section using ultrasound. The volar-dorsal positions of the tendons, TCL arch height, and TCL-tendon distances were calculated. With increasing wrist flexion, the flexor tendons moved volarly, the TCL arch height increased, and the TCL-tendon distances decreased, indicating that the flexor tendons contacted the TCL and pushed it volarly. The TCL-tendon interaction was amplified by the combination of finger loading and wrist flexion. This study provides in vivo evidence of the biomechanical interaction between the TCL and flexor tendons. Repetitive TCL-tendon interactions may implicate the interacting tissues and the median nerve resulting in tissue maladaptation and nerve compression.
腕横韧带(TCL)是腕部屈肌腱滑车系统的一个组成部分,通过抵抗屈肌腱的掌侧移位使其保持在原位。本研究的目的是调查在手腕处于不同姿势时,随着肌腱张紧,TCL与屈肌腱之间的体内生物力学相互作用。在8名健康受试者中,当手腕姿势处于背伸20°、中立位、掌屈20°和掌屈40°时,通过向示指等长施加负荷(5、10和15N)来张紧指浅屈肌腱和指深屈肌腱。使用超声在腕管远侧横截面处对TCL和屈肌腱进行成像。计算肌腱的掌背位置、TCL弓高度以及TCL与肌腱之间的距离。随着腕关节屈曲增加,屈肌腱向掌侧移动,TCL弓高度增加,TCL与肌腱之间的距离减小,表明屈肌腱与TCL接触并将其向掌侧推挤。手指负荷与腕关节屈曲相结合会放大TCL与肌腱之间的相互作用。本研究提供了TCL与屈肌腱之间生物力学相互作用的体内证据。TCL与肌腱之间的反复相互作用可能累及相互作用的组织和正中神经,导致组织适应不良和神经受压。