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Stimulation location within the substantia nigra pars reticulata differentially modulates gait in hemiparkinsonian rats

机译:黑质网状组织内的刺激位置差异调节半帕金森病大鼠的步态

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Deep brain stimulation (DBS) improves the distal motor symptoms of Parkinson's disease, but long-term improvements in gait and postural disturbances are less pronounced. The effects of stimulation location, within the large nuclear region of the substantia nigra pars reticulata (SNr), and stimulation parameters on improvement in gait are unclear, and this lack of foundational knowledge hinders the application and optimization of SNr DBS. We quantified the effects of medial vs. lateral SNr DBS on methamphetamine-induced circling in hemiparkinsonian rats to test the hypothesis that stimulation location differentially modulates axial symptoms. The frequency tuning curves showed opposite trends with stimulation frequency; during high frequency stimulation, medial SNr DBS decreased ipsilateral circling, while lateral SNr DBS had no effect on circling. As well, we quantified the effects of 130 Hz SNr DBS on gait to test the hypothesis that SNr DBS location differentially modulates gait. High frequency DBS of the medial SNr, but not lateral SNr, improved the rat's ability to maintain walking speed. The therapeutic effects of medial SNr DBS appeared to improve with time on the same order as clinical studies (>10 min). These results suggest that improvement in gait depends on the location of the electrodes (medial vs. lateral SNr) with a time course for improvement reminiscent of human data and provide a rational basis for the appropriate selection of implant site and stimulation parameters for SNr DBS.
机译:深度脑刺激(DBS)改善了帕金森氏病的远端运动症状,但步态和姿势障碍的长期改善并不明显。目前尚不清楚刺激位置,黑质网状大核区(SNr)中的刺激位置以及刺激参数对步态改善的影响,并且缺乏基础知识阻碍了SNr DBS的应用和优化。我们量化了内侧和外侧SNr DBS对甲基苯丙胺诱导的半帕金森氏大鼠盘旋的影响,以检验刺激位置差异调节轴向症状的假说。频率调谐曲线与刺激频率呈相反的趋势。在高频刺激期间,内侧SNr DBS减少了同侧的盘旋,而外侧SNr DBS对循环没有影响。同样,我们量化了130 Hz SNr DBS对步态的影响,以检验SNr DBS位置差异调节步态的假设。内侧SNr的高频DBS而非外侧SNr的高频DBS改善了大鼠维持步行速度的能力。 SNr DBS内侧的治疗效果似乎随着时间的推移而有所改善,其顺序与临床研究相同(> 10分钟)。这些结果表明,步态的改善取决于电极的位置(内侧SNr与外侧SNr),其时程可以使人联想到人类数据,并且为合理选择SNr DBS的植入部位和刺激参数提供了合理的基础。

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