首页> 外文期刊>Neuroscience: An International Journal under the Editorial Direction of IBRO >Motor Thalamic Deep Brain Stimulation Alters Cortical Activity and Shows Therapeutic Utility for Treatment of Parkinson?s Disease Symptoms in a Rat Model
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Motor Thalamic Deep Brain Stimulation Alters Cortical Activity and Shows Therapeutic Utility for Treatment of Parkinson?s Disease Symptoms in a Rat Model

机译:电机硫醇深脑刺激改变皮质活动,显示治疗效用,治疗大鼠模型中的帕金森病症状

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brain stimulation (DBS) in Parkinson?s disease (PD) alters neuronal function and network communication to improve motor symptoms. The subthalamic nucleus (STN) is the most common DBS target for PD, but some patients experience adverse effects on memory and cognition. Previously, we reported that DBS of the ventral anterior (VA) and ventrolateral (VL) nuclei of the thalamus and at the interface between the two (VA|VL), collectively VA-VL, relieved forelimb akinesia in the hemiparkinsonian 6-hydroxydopamine (6-OHDA) rat model. To determine the mechanism(s) underlying VA-VL DBS efficacy, we examined how motor cortical neurons respond to VA-VL DBS using single-unit recording electrodes in anesthetized 6-OHDA lesioned rats. VA-VL DBS increased spike frequencies of primary (M1) and secondary (M2) motor cortical pyramidal cells and M2, but not M1, interneurons. To explore the translational merits of VA-VL DBS, we compared the therapeutic window, rate of stimulationinduced dyskinesia onset, and effects on memory between VA-VL and STN DBS. VA-VL and STN DBS had comparable therapeutic windows, induced dyskinesia at similar rates in hemiparkinsonian rats, and adversely affected performance in the novel object recognition (NOR) test in cognitively normal and mildly impaired sham animals. Interestingly, a subset of sham rats with VA-VL implants showed severe cognitive deficits with DBS off. VA-VL DBS improved NOR test performance in these animals. We conclude that VA-VL DBS may exert its therapeutic effects by increasing pyramidal cell activity in the motor cortex and interneuron activity in the M2, with plausible potential to improve memory in PD. ? 2021 IBRO. Published by Elsevier Ltd. All rights reserved.
机译:帕金森病患者的脑刺激(DBS)?帕金森病(PD)通过改变神经元功能和网络通讯来改善运动症状。丘脑底核(STN)是帕金森病最常见的DBS靶点,但一些患者的记忆和认知受到不良影响。在此之前,我们报道了丘脑腹前核(VA)和腹外侧核(VL)以及两者(VA | VL)交界处的DBS,统称为VA-VL,在偏侧帕金森病6-羟基多巴胺(6-OHDA)大鼠模型中缓解了前肢运动障碍。为了确定VA-VL DBS疗效的潜在机制,我们在麻醉的6-OHDA损伤大鼠中使用单单位记录电极研究了运动皮层神经元对VA-VL DBS的反应。VA-VL DBS增加了初级(M1)和次级(M2)运动皮质锥体细胞以及M2(但不是M1)中间神经元的棘波频率。为了探索VA-VL DBS的翻译优势,我们比较了VA-VL和STN DBS之间的治疗窗口、刺激诱发运动障碍的发病率以及对记忆的影响。VA-VL和STN DBS具有相似的治疗窗口,在偏侧帕金森病大鼠中以相似的速率诱发运动障碍,并对认知正常和轻度受损的假动物的新物体识别(NOR)测试表现产生不利影响。有趣的是,一部分植入VA-VL的假大鼠在DBS关闭时表现出严重的认知缺陷。VA-VL DBS改善了这些动物的NOR测试性能。我们的结论是,VA-VL DBS可能通过增加运动皮质的锥体细胞活性和M2的中间神经元活性来发挥其治疗作用,并可能改善PD患者的记忆?2021 IBRO。爱思唯尔有限公司出版。版权所有。

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