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首页> 外文期刊>Journal of neural engineering >Towards chronic deep brain stimulation in freely moving hemiparkinsonian rats: applicability and functionality of a fully implantable stimulation system
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Towards chronic deep brain stimulation in freely moving hemiparkinsonian rats: applicability and functionality of a fully implantable stimulation system

机译:在自由移动的血管血管大鼠中致慢性深脑刺激:完全植入刺激系统的适用性和功能

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摘要

Objective. This study aimed at investigating a novel fully implantable deep brain stimulation (DBS) system and its ability to modulate brain metabolism and behavior through subthalamic nucleus (STN) stimulation in a hemiparkinsonian rat model. Approach. Twelve male rats were unilaterally lesioned with 6-hydroxydopamine in the medial forebrain bundle and received a fully implantable DBS system aiming at the ipsilesional STN. Each rat underwent three cylinder tests to analyze front paw use: a PRE test before any surgical intervention, an OFF test after surgery but before stimulation onset and an ON test under DBS. To visualize brain glucose metabolism in the awake animal, two [~(18)F]FDG scans were conducted in the OFF and ON condition. At least 4 weeks after surgery, an [~(18)F]FDOPA scan was used to check for dopaminergic integrity. Main results. In general, STN DBS increased [~(18)F]FDG uptake ipsilesionally and decreased it contralesionally. More specifically, bilateral orbitofrontal cortex, ipsilateral caudate putamen, sensorimotor cortex and nucleus accumbens showed significantly higher tracer uptake in ON compared to OFF condition. Contralateral cingulate and secondary motor cortex, caudate putamen, amygdala, hippocampus, retrosplenial granular cortex, superior colliculus, and parts of the cerebellum exhibited significantly higher [~(18)F]FDG uptake in the OFF condition. On the behavioral level, stimulation was able improve use of the contralesional affected front paw suggesting an effective stimulation produced by the implanted system. Significance. The fully implantable stimulation system developed by us and presented here offers the output of arbitrary user-defined waveforms, patterns and stimulation settings and allows tracer accumulation in freely moving animals. It is therefore a suitable device for implementing behavioral PET studies. It contributes immensely to the possibilities to characterize and unveil the effects and mechanisms of DBS offering valuable clues for future improvements of this therapy.
机译:客观的。本研究旨在调查一种新型完全植入的深脑刺激(DBS)系统,其通过在Hemiparkinsonian大鼠模型中通过次粒子核(STN)刺激调节脑代谢和行为的能力。方法。 12种雄性大鼠在内侧前脑束中单独致死6-羟基多胺,并接受了旨在Ipsiles STN的全植入DBS系统。每只大鼠接受三个气缸试验来分析前爪子使用:在任何手术干预前进行预测试,手术后脱离测试,但在刺激开始之前和DBS下的试验。为了在唤醒动物中可视化脑葡萄糖代谢,在关闭和条件下进行两次[〜(18)张F] FDG扫描。手术后至少4周,使用[〜(18)F] FDOPA扫描来检查多巴胺能完整性。主要结果。通常,STN DBS增加[〜(18)F] FDG摄取IPSILEELALLALLALLELALLELALLY并对反正下降。更具体地说,双侧胰岛素皮质皮质,同侧尾状腐烂,传感器皮质皮质和核心,与截止条件相比,在相比之下显着提高了较高的示踪剂吸收。对侧铰接和二级电机皮质,尾状腐烂,杏仁菌,海马,肾瓣粒状皮质,优异的小学生和细胞部分显着高于[〜(18)F] FDG摄取在截止条件下。在行为水平上,刺激能够改善矛盾的受影响的前爪的使用,表明由植入系统产生的有效刺激。意义。由我们开发并呈现的完全植入的刺激系统和此处提供了任意用户定义的波形,模式和刺激设置的输出,并允许在自由移动的动物中累积追加物。因此,它是实现行为宠物研究的合适装置。它对表征和揭示了DBS提供了有价值的线索的可能性和机制来促进贡献和揭示这种治疗的效果和机制。

著录项

  • 来源
    《Journal of neural engineering》 |2021年第3期|036018.1-036018.12|共12页
  • 作者单位

    University of Cologne Faculty of Medicine and University Hospital Cologne Institute of Radiochemistry and Experimental Molecular Imaging Kerpener Str.62 50937 Koeln Germany;

    Medtronic Rice Creek East 7000 Central Avenue NE Minneapolis MN 55432 United States of America;

    Forschungszentrum Juelich GmbH Institute of Neuroscience and Medicine Nuclear Chemistry(INM-5) Wilhelm-Johnen-Strasse 52428 Juelich Germany University of Cologne Faculty of Medicine and University Hospital Cologne Institute of Radiochemistry and Experimental Molecular Imaging Kerpener Str.62 50937 Koeln Germany;

    University of Cologne Faculty of Medicine and University Hospital Cologne Department of Nuclear Medicine Kerpener Str.62 50937 Koeln Germany German Center for Neurodegenerative Diseases(DZNE) Bonn-Cologne Germany Forschungszentrum Juelich GmbH Institute of Neuroscience and Medicine(INM-2) Molecular Organization of the Brain 52428 Juelich Germany;

    Department of In-vivo NMR Max Planck Institute for Metabolism Research Gleueler Str.50 50931 Koeln Germany;

    Medtronic Rice Creek East 7000 Central Avenue NE Minneapolis MN 55432 United States of America;

    Medtronic Rice Creek East 7000 Central Avenue NE Minneapolis MN 55432 United States of America;

    Medtronic Rice Creek East 7000 Central Avenue NE Minneapolis MN 55432 United States of America;

    Department of Neurology University Hospital of Giessen and Marburg Baldingerstrasse 35043 Marburg Germany;

    Forschungszentrum Juelich GmbH Institute of Neuroscience and Medicine Nuclear Chemistry(INM-5) Wilhelm-Johnen-Strasse 52428 Juelich Germany University of Cologne Faculty of Medicine and University Hospital Cologne Institute of Radiochemistry and Experimental Molecular Imaging Kerpener Str.62 50937 Koeln Germany University of Cologne Faculty of Medicine and University Hospital Cologne Department of Nuclear Medicine Kerpener Str.62 50937 Koeln Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Parkinson's disease; deep brain stimulation; 6-OHDA rat model; subthalamic nucleus; cylinder test; ~(18)FFDG PET;

    机译:帕金森病;深脑刺激;6-OHDA大鼠模型;细胞核;气缸试验;[〜(18)F] FDG宠物;
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