首页> 美国卫生研究院文献>The Journal of Neuroscience >Dopamine Release in the Nonhuman Primate Caudate and Putamen Depends upon Site of Stimulation in the Subthalamic Nucleus
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Dopamine Release in the Nonhuman Primate Caudate and Putamen Depends upon Site of Stimulation in the Subthalamic Nucleus

机译:非人灵长类动物的尾状和壳状核中的多巴胺释放取决于丘脑底核的刺激位点。

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摘要

Deep brain stimulation (DBS) of the subthalamic nucleus (STN) is an effective treatment for medically refractory Parkinson's disease. Although DBS has recognized clinical utility, its biologic mechanisms are not fully understood, and whether dopamine release is a potential factor in those mechanisms is in dispute. We tested the hypothesis that STN DBS-evoked dopamine release depends on the precise location of the stimulation site in the STN and the site of recording in the caudate and putamen. We conducted DBS with miniature, scaled-to-animal size, multicontact electrodes and used functional magnetic resonance imaging to identify the best dopamine recording site in the brains of nonhuman primates (rhesus macaques), which are highly representative of human brain anatomy and circuitry. Real-time stimulation-evoked dopamine release was monitored using in vivo fast-scan cyclic voltammetry. This study demonstrates that STN DBS-evoked dopamine release can be reduced or increased by redirecting STN stimulation to a slightly different site.>SIGNIFICANCE STATEMENT Electrical stimulation of deep structures of the brain, or deep brain stimulation (DBS), is used to modulate pathological brain activity. However, technological limitations and incomplete understanding of the therapeutic mechanisms of DBS prevent personalization of this therapy and may contribute to less-than-optimal outcomes. We have demonstrated that DBS coincides with changes in dopamine neurotransmitter release in the basal ganglia. Here we mapped relationships between DBS and changes in neurochemical activity. Importantly, this study shows that DBS-evoked dopamine release can be reduced or increased by refocusing the DBS on a slightly different stimulation site.
机译:丘脑底核(STN)的深部脑刺激(DBS)是治疗难治性帕金森氏病的有效方法。尽管星展银行已经认识到其临床实用性,但其生物学机制尚不完全清楚,多巴胺释放是否是这些机制中的潜在因素尚有争议。我们测试了以下假设:STN DBS引起的多巴胺释放取决于STN中刺激部位的精确位置以及尾状和壳状核中的记录部位。我们使用微型,按比例缩放至动物大小的多触点电极进行了DBS,并使用功能磁共振成像来确定非人类灵长类动物(恒河猴)的最佳多巴胺记录部位,这是人类大脑解剖结构和电路的高度代表。使用体内快速扫描循环伏安法监测实时刺激诱发的多巴胺释放。这项研究表明,通过将STN刺激重定向到稍有不同的部位,可以减少或增加STN DBS引起的多巴胺释放。>意义声明对脑深部结构的电刺激或深脑刺激(DBS) ,用于调节病理性脑活动。但是,技术上的局限性以及对DBS治疗机制的不完全了解阻止了该疗法的个性化,并且可能会导致效果不佳的结果。我们已经证明,DBS与基底神经节中多巴胺神经递质释放的变化相吻合。在这里,我们绘制了DBS与神经化学活性变化之间的关系图。重要的是,这项研究表明,通过将DBS重新聚焦在稍有不同的刺激部位上,可以减少或增加DBS引起的多巴胺释放。

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