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Stereotactic neurosurgical planning recording and visualization for deep brain stimulation in non-human primates

机译:用于非人灵长类动物深部脑刺激的立体定向神经外科计划记录和可视化

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摘要

Methodologies for stereotactic neurosurgery and neurophysiological microelectrode recordings (MER) in non-human primate research typically rely on brain atlases that are not customized to the individual animal, and require paper records of MER data. To address these limitations, we developed a software tool (Cicerone) that enables simultaneous interactive 3D visualization of the neuroanatomy, neurophysiology, and neurostimulation data pertinent to deep brain stimulation (DBS) research studies in non-human primates. Cicerone allows for analysis of co-registered magnetic resonance images (MRI), computed tomography (CT) scans, 3D brain atlases, MER data, and DBS electrode(s) with predictions of the volume of tissue activated (VTA) as a function of the stimulation parameters. We used Cicerone to aid the implantation of DBS electrodes in two parkinsonian rhesus macaques, targeting the subthalamic nucleus in one monkey and the globus pallidus in the other. Cicerone correctly predicted the anatomical position of 79% and 73% of neurophysiologically defined MER sites in the two animals, respectively. In contrast, traditional 2D print atlases achieved 61% and 48% accuracy. Our experience suggests that Cicerone can improve anatomical targeting, enhance electrophysiological data visualization, and augment the design of stimulation experiments.
机译:非人类灵长类动物研究中的立体定向神经外科手术和神经生理学微电极记录(MER)的方法通常依赖于未为个别动物定制的脑图谱,并且需要纸质记录MER数据。为了解决这些限制,我们开发了一种软件工具(Cicerone),该工具可以同时进行与非人类灵长类动物的深部脑刺激(DBS)研究相关的神经解剖学,神经生理学和神经刺激数据的交互式3D可视化。 Cicerone可以分析共同注册的磁共振图像(MRI),计算机断层扫描(CT)扫描,3D脑图谱,MER数据和DBS电极,并预测激活的组织(VTA)的数量与功能有关刺激参数。我们使用塞昔隆来协助将DBS电极植入两只帕金森氏恒河猴中,以一只猴子的丘脑下核和另一只苍白球为靶标。 Cicerone分别正确地预测了两只动物中79%和73%的神经生理学定义的MER部位的解剖位置。相比之下,传统2D打印图集的准确率达到61%和48%。我们的经验表明,Cicerone可以改善解剖学目标,增强电生理数据的可视化,并增强刺激实验的设计。

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