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Assessment of axonal recruitment using model-guided preclinical spinal cord stimulation in the ex vivo adult mouse spinal cord

机译:以辐射成年小鼠脊髓刺激模型引导临床前脊髓刺激评估轴突招募

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Spinal cord stimulation (SCS) is used clinically to limit chronic pain, but fundamental questions remain on the identity of axonal populations recruited. We developed an ex vivo adult mouse spinal cord preparation to assess recruitment following delivery of clinically analogous stimuli determined by downscaling a finite element model of clinical SCS. Analogous electric field distributions were generated with 300-mu m x 300-mu m electrodes positioned 200 mu m above the dorsal column (DC) with stimulation between 50 and 200 mu A. We compared axonal recruitment using electrodes of comparable size and stimulus amplitudes when contacting the caudal thoracic DC and at 200 or 600 mu m above. Antidromic responses recorded distally from the DC, the adjacent Lissauer tract (LT), and in dorsal roots (DRs) were found to be amplitude and site dependent. Responses in the DC included a unique component not seen in DRs, having the lowest SCS recruitment amplitude and fastest conduction velocity. At 200 mu m above, mean cathodic SCS recruitment threshold for axons in DRs and LT were 2.6 and 4.4 times higher, respectively, than DC threshold. SCS recruited primary afferents in all (up to 8) caudal segments sampled. Whereas A and C fibers could be recruited at nearby segments, only A fiber recruitment and synaptically mediated dorsal root reflexes were observed in more distant (lumbar) segments. In sum, clinically analogous SCS led to multisegmental recruitment of several somatosensory-encoding axonal populations. Most striking is the possibility that the lowest threshold recruitment of a nonprimary afferent population in the DC are postsynaptic dorsal column tract cells (PSDCs) projecting to gracile nuclei.
机译:脊髓电刺激(SCS)是临床上用来限制慢性疼痛,但根本性的问题仍然在招募轴突群体的身份。我们开发了一个离体成年小鼠脊髓制备评估以下输送通过缩减临床SCS的有限元模型确定临床上类似的刺激的募集。用300-MU产生类似的电场分布MX 300微米的电极定位接触时200微米的背柱(DC),用50和200微米A.我们比较使用可比的尺寸和刺激幅度的电极轴突招募之间的刺激以上尾胸椎DC,并在200或600以上亩微米。从直流向远侧记录逆向反应,相邻Lissauer道(LT),以及在背根(DRS)被发现是振幅与本站依赖性。在DC反应包括在DRS没有看到一个唯一的元件,具有最低SCS招募振幅和最快的传导速度。在200微米以上男,用于DRS和LT轴突平均阴极SCS招募阈较高2.6和4.4倍,分别比DC阈值。 SCS在所有采样(最多8个)段尾招募初级传入。而A和C的纤维可以在邻近段被招募,只有A纤维募集和介导的突触背根反射在更远的(腰部)片段中观察到。总之,临床上类似的SCS导致了一些体感编码轴突人口多节招募。最引人注目的是,在DC非主传入人口的最低阈值招募是突触后背柱道细胞(PSDCs)投射到薄束核的可能性。

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