首页> 美国卫生研究院文献>Frontiers in Neurology >The Serendipity Case of the Pedunculopontine Nucleus Low-Frequency Brain Stimulation: Chasing a Gait Response Finding Sleep and Cognition Improvement
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The Serendipity Case of the Pedunculopontine Nucleus Low-Frequency Brain Stimulation: Chasing a Gait Response Finding Sleep and Cognition Improvement

机译:足桥神经核低频大脑刺激的意外案例:追逐步态反应发现睡眠和认知能力改善

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摘要

Deep brain stimulation (DBS) of the subthalamic nucleus (STN) is an efficacious therapy for Parkinson’s disease (PD) but its effects on non-motor facets may be detrimental. The low-frequency stimulation (LFS) of the pedunculopontine nucleus (PPN or the nucleus tegmenti pedunculopontini – PPTg-) opened new perspectives. In our hands, PPTg-LFS revealed a modest influence on gait but increased sleep quality and degree of attentiveness. At odds with potential adverse events following STN-DBS, executive functions, under PPTg-ON, ameliorated. A recent study comparing both targets found that only PPTg-LFS improved night-time sleep and daytime sleepiness. Chances are that different neurosurgical groups influence either the PPN sub-portion identified as pars dissipata (more interconnected with GPi/STN) or the caudal PPN region known as pars compacta, preferentially targeting intralaminar and associative nucleus of the thalamus. Yet, the wide electrical field delivered affects a plethora of en passant circuits, and a fine distinction on the specific pathways involved is elusive. This review explores our angle of vision, by which PPTg-LFS activates cholinergic and glutamatergic ascending fibers, influencing non-motor behaviors.
机译:丘脑底核(STN)的深部脑刺激(DBS)是治疗帕金森氏病(PD)的有效疗法,但其对非运动方面的影响可能有害。 pedunculopontine核(PPN或tegmenti pedunculopontini核– PPTg-)的低频刺激(LFS)开辟了新的视角。在我们的手中,PPTg-LFS对步态影响不大,但睡眠质量和专注度却有所提高。与STN-DBS之后的潜在不良事件不一致,PPTg-ON下的执行功能得到了改善。一项比较两个目标的最新研究发现,只有PPTg-LFS可以改善夜间睡眠和白天嗜睡。可能的是,不同的神经外科手术组可能会影响识别为pars dissipata(与GPi / STN相互连接)的PPN子部分或被称为pars compacta的尾PPN区,从而优先针对丘脑的层内和相关核。然而,所传递的宽电场会影响大量的无源电路,并且在所涉及的特定路径上的精细区分是难以捉摸的。这篇综述探讨了我们的视角,PPTg-LFS通过它激活胆碱能和谷氨酸能上升纤维,从而影响非运动行为。

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