Department of Neurological, Neurosurgical and Behavioural Sciences, University of Siena, Siena, Italy.
J Peripher Nerv Syst. 2012 Dec;17(4):391-8. doi: 10.1111/j.1529-8027.2012.00437.x.
In hereditary neuropathy with liability to pressure palsies (HNPP), the increase in distal motor latencies (DMLs) is often out of proportion to the slowing of conduction velocities, but the pathophysiological mechanism is still unclear. We used a combined electrophysiological and ultrasonographic (US) approach to provide insight into this issue. Twelve HNPP subjects underwent extensive electrophysiological studies and US measurements of the cross-sectional area (CSA) of several peripheral nerves. US nerve enlargement was only observed in the carpal tunnel, Guyon's canal, the elbow and the fibular head. We did not observe US abnormalities at sites where nerve entrapment is uncommon. An increase in DMLs was observed regardless of US nerve enlargement. The increased nerve CSA only in common sites of entrapment likely reflected the well-documented nerve vulnerability to mechanical stress in HNPP. No morphometric changes were seen in the distal nerve segments where compression/entrapment is unlikely, despite the fact that the DMLs were increased. These data suggest that factors other than mechanical stress are responsible for the distal slowing of action potential propagation. We speculate that a mixture of mechanical insults and an axon-initiated process in the distal nerves underlies the distal slowing and/or conduction failure in HNPP.
遗传性压力易发性神经病(HNPP)中,远端运动潜伏期(DML)的增加往往与传导速度的减慢不成比例,但病理生理机制仍不清楚。我们使用联合电生理和超声(US)方法来深入了解这个问题。12 名 HNPP 患者接受了广泛的电生理研究和对几个周围神经的横截面积(CSA)的 US 测量。仅在手腕管、Guyon 管、肘部和腓骨头观察到 US 神经增大。我们没有在神经受压不常见的部位观察到 US 异常。无论 US 神经增大与否,均观察到 DML 增加。在常见的受压部位,神经 CSA 的增加可能反映了 HNPP 中神经对机械压力易损性的明确记录。尽管 DML 增加,但在不太可能发生压迫/受压的远端神经段未见形态学变化。这些数据表明,除机械应力外,还有其他因素导致动作电位传播的远端减慢。我们推测,机械损伤和远端神经中的轴突起始过程的混合是 HNPP 中远端减慢和/或传导失败的基础。