Palmer Center for Chiropractic Research, Palmer College of Chiropractic, Davenport, IA, USA.
J Electromyogr Kinesiol. 2012 Oct;22(5):785-94. doi: 10.1016/j.jelekin.2012.01.015. Epub 2012 Feb 19.
Manually-applied movement and mobilization of body parts as a healing activity has been used for centuries. A relatively high velocity, low amplitude force applied to the vertebral column with therapeutic intent, referred to as spinal manipulative therapy (SMT), is one such activity. It is most commonly used by chiropractors, but other healthcare practitioners including osteopaths and physiotherapists also perform SMT. The mechanisms responsible for the therapeutic effects of SMT remain unclear. Early theories proposed that the nervous system mediates the effects of SMT. The goal of this article is to briefly update our knowledge regarding several physical characteristics of an applied SMT, and review what is known about the signaling characteristics of sensory neurons innervating the vertebral column in response to spinal manipulation. Based upon the experimental literature, we propose that SMT may produce a sustained change in the synaptic efficacy of central neurons by evoking a high frequency, bursting discharge from several types of dynamically-sensitive, mechanosensitive paraspinal primary afferent neurons.
手动对身体部位进行运动和活动作为一种治疗活动已经使用了几个世纪。一种具有治疗意图的相对高速度、低幅度的力施加到脊柱上,称为脊柱手法治疗(SMT),就是这样一种活动。它最常由脊椎按摩师使用,但其他医疗保健从业者,包括整骨医生和物理治疗师,也进行 SMT。SMT 的治疗效果的机制仍不清楚。早期的理论提出神经系统介导 SMT 的作用。本文的目的是简要更新我们对应用 SMT 的几个物理特性的了解,并回顾一下已知的支配脊柱的感觉神经元对脊柱手法的反应的信号特征。根据实验文献,我们提出 SMT 可能通过从几种类型的动态敏感、机械敏感的脊柱旁初级传入神经元中引发高频、爆发性放电,从而产生中枢神经元突触效能的持续变化。