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The spinal cord connections of the myofascial trigger spots.

机译:肌筋膜触发点的脊髓连接。

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BACKGROUND: Recent electrophysiological studies revealed that endplate noise (EPN) could be specifically recorded from a myofascial trigger point (MTrP) region. EPN has been considered as the focal graded potentials due to excessive acetylcholine release in neuromuscular junction. A recent histological study has demonstrated a free nerve ending at the vicinity of the site, from where EPN could be recorded in an MTrP region. However, the sensory (afferent) and the motor (efferent) connections between an MTrP and the spinal cord still has never been fully studied. AIMS: The aim of this study was to delineate both motor and sensory connections between an MTrP and the spinal cord by applying the stain with horseradish peroxidase (HRP). METHODS: Nine Wistar rats were studied. When the rat was anesthetized, its biceps femoris muscles were exposed for localizing the myofascial trigger spot (MTrS, equivalent to MTrP in human). In one side, a monopolar Teflon-coated, hollow-needle electrode was used for searching EPN in an MTrS region, and then HRP was injected via this hollow-needle electrode into the site where EPN was recorded. HRP was also injected into a normal (non-taut band, non-MTrS) site in the contralateral side to obtain the control data. Two days after HRP injection, the rats were sacrificed and their spinal cords and dorsal root ganglia (DRG) were sectioned for the identification of the sites where neurons were labeled with HRP. RESULTS: The HRP-labeled neurons were found in the ventral horn of the spinal cord and in the DRG over L3, L4, and L5, while most were found in the L5 level. The mean numbers of HRP-labeled neurons in the EPN side looked smaller than that in the control side, but the difference did not reach statistically significant level (P>0.05). The mean values of the diameters of the HRP-labeled neurons in the DRG were not significantly different between the EPN side and the control side (P>0.05). However, HRP-neurons in the ventral horn of the spinal cord in the EPN side showed mild tendency to be smaller than that in the control side. CONCLUSIONS: The spinal cord connections of an MTrS are basically similar to that for a normal tissue region. The motor neurons related to MTrS tended to be smaller in their diameters. The findings in this study further supported the previously proposed hypotheses for the pathogenesis of an MTrP.
机译:背景:最近的电生理研究表明,可以从肌筋膜触发点(MTrP)区域特别记录终板噪声(EPN)。由于神经肌肉接头中过多的乙酰胆碱释放,EPN被认为是局部分级电位。最近的组织学研究表明,游离神经末端在该部位附近,从该部位可以在MTrP区域记录EPN。但是,关于MTrP和脊髓之间的感觉(触动)和运动(有效)连接仍然没有得到充分的研究。目的:本研究的目的是通过用辣根过氧化物酶(HRP)施加染色剂来描绘MTrP与脊髓之间的运动和感觉连接。方法:研究了9只Wistar大鼠。麻醉大鼠后,暴露其股二头肌以定位肌筋膜触发点(MTrS,相当于人的MTrP)。在一侧,使用涂有特氟隆的单极空心针电极在MTrS区域中搜索EPN,然后通过该空心针电极将HRP注入记录EPN的位置。还将HRP注射到对侧的正常(非绷紧带,非MTrS)部位以获得对照数据。注射HRP后两天,处死大鼠,将其脊髓和背根神经节(DRG)切片,以鉴定用HRP标记神经元的部位。结果:HRP标记的神经元在L3,L4和L5的脊髓腹角和DRG中被发现,而大多数在L5水平被发现。 EPN侧的HRP标记神经元平均数看起来比对照组小,但差异未达到统计学上的显着水平(P> 0.05)。 EPN侧和对照侧之间,DRG中HRP标记的神经元直径的平均值无显着差异(P> 0.05)。然而,EPN侧脊髓腹角中的HRP神经元显示出比对照侧小的轻度趋势。结论:MTrS的脊髓连接与正常组织区域基本相似。与MTrS相关的运动神经元的直径往往较小。这项研究的发现进一步支持了先前提出的MTrP发病机理假说。

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