Rydevik B, Brown M D, Lundborg G
Spine (Phila Pa 1976). 1984 Jan-Feb;9(1):7-15. doi: 10.1097/00007632-198401000-00004.
The anatomy and physiology of the nerve root complex in the lumbar spine are reviewed, with special reference to the effects of mechanical deformation of nerve roots in association with intervertebral disc herniation and spinal stenosis. Biomechanical aspects of nerve root deformation induced by compression are discussed. The functional changes induced by compression can be caused by mechanical nerve fiber deformation but also may be a consequence of changes in nerve root microcirculation, leading to ischemia and formation of intraneural edema. Nerve root compression can, by different neurophysiologic mechanisms, induce motor weakness and altered sensibility or pain. Intraneural edema and demyelination seem to be critical factors for the production of pain in association with nerve root compression.
本文回顾了腰椎神经根复合体的解剖学和生理学,特别提及了与椎间盘突出和椎管狭窄相关的神经根机械性变形的影响。讨论了由压迫引起的神经根变形的生物力学方面。压迫引起的功能变化可能是由神经纤维的机械性变形导致的,但也可能是神经根微循环变化的结果,进而导致缺血和神经内水肿的形成。神经根压迫可通过不同的神经生理机制引起运动无力、感觉改变或疼痛。神经内水肿和脱髓鞘似乎是与神经根压迫相关疼痛产生的关键因素。