Johansson H, Sjölander P, Sojka P
Department of Physiology, University of Umeå, Sweden.
Clin Orthop Relat Res. 1991 Jul(268):161-78.
Morphologic, physiologic, and clinical evidence for the sensory role of the cruciate ligaments is reviewed. The cruciate ligaments accommodate morphologically different sensory nerve endings (Ruffini endings, Pacinian corpuscles, Golgi tendon organlike endings, and free nerve endings) with different capabilities of providing the central nervous system with information not only about noxious and chemical events but also about characteristics of movements and position-related stretches of these ligaments. A survey of available data reveals that low threshold joint-ligament receptor (i.e., mechanoreceptor) afferents evoke only weak and rare effects in skeletomotor neurons (alpha-motor neurons), while they frequently and powerfully influence fusimotor neurons (gamma-motor neurons). The effects on the gamma-muscle-spindle system in the muscles around the knee are so potent that even stretches of the cruciate ligaments at relatively moderate loads (not noxious) may induce major changes in responses of the muscle spindle afferents. As the activity in the primary muscle spindle afferents modifies the stiffness in the muscles, the cruciate ligament receptors, via the gamma-muscle-spindle system, may participate in the regulation and preprogramming of the muscular stiffness around the knee joint and thereby of the knee joint stiffness. Thus, the sensory system of the cruciate ligaments is able to significantly contribute to the functional stability of the knee joint.
本文综述了交叉韧带感觉功能的形态学、生理学及临床证据。交叉韧带容纳形态各异的感觉神经末梢(鲁菲尼小体、帕西尼小体、类高尔基腱器官末梢及游离神经末梢),这些神经末梢不仅能够向中枢神经系统传递有关伤害性和化学性事件的信息,还能传递这些韧带的运动特征及与位置相关的拉伸信息。对现有数据的调查显示,低阈值关节韧带感受器(即机械感受器)传入神经在骨骼肌运动神经元(α运动神经元)中仅引起微弱且罕见的效应,而它们却频繁且强烈地影响梭内肌运动神经元(γ运动神经元)。对膝关节周围肌肉中γ肌梭系统的影响非常显著,以至于即使在相对适中的负荷(非伤害性)下交叉韧带的拉伸也可能引起肌梭传入神经反应的重大变化。由于初级肌梭传入神经的活动会改变肌肉的刚度,交叉韧带感受器可通过γ肌梭系统参与膝关节周围肌肉刚度的调节和预编程,进而参与膝关节刚度的调节。因此,交叉韧带的感觉系统能够对膝关节的功能稳定性做出显著贡献。