首页> 外文期刊>Stereotactic and Functional Neurosurgery: Official Journal of the World Society for Stereotactic and Functional Neurosurgery >DBStar: An Open-Source Tool Kit for Imaging Analysis with Patient-Customized Deep Brain Stimulation Platforms
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DBStar: An Open-Source Tool Kit for Imaging Analysis with Patient-Customized Deep Brain Stimulation Platforms

机译:DBSTAR:用于患者定制深脑刺激平台的成像分析的开源工具套件

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Background/Objectives: To create an open-source method for reconstructing microelectrode recording (MER) and deep brain stimulation (DBS) electrode coordinates along multiple parallel trajectories with patient-specific DBS implantation platforms to facilitate DBS research. Methods: We combined the surgical geometry (extracted from WayPoint Planner), pre-/intra-/postoperative computed tomography (CT) and/or magnetic resonance (MR) images, and integrated them into the Analysis of Functional NeuroImages (AFNI) neuroimaging analysis environment using functions written in Python. Electrode coordinates were calculated from image-based electrode surfaces and recording trajectory depth values. Coordinates were translated into appropriate trajectories, and were tested for proximity to patient-specific or atlas-based anatomical structures. Final DBS electrode coordinates for 3 patient populations (ventral intermediate nucleus [VIM], subthalamic nucleus [STN], and globus pallidus pars interna [GPi]) were calculated. For STN cases, MER site coordinates were then analyzed to see whether they were inside or outside the STN. Results: Final DBS electrode coordinates were described for VIM, STN, and GPi patient populations. 115/169 (68%) STN MER sites were within 1 mm of the STN in AFNI’s Talairach and Tournoux (TT) atlas. Conclusions: DBStar is a robust tool kit for understanding the anatomical location and context of electrode locations, and can easily be used for imaging, behavioral, or electrophysiological analyses.
机译:背景/目标:创建用于重建微电极记录(MER)和深脑刺激(DBS)电极的开源方法沿多个平行的轨迹与患者特定的DBS注入平台坐标,以便于DBS研究。方法:我们将外科几何形状(从Waypoint Planner提取)组合,/ /术后术后计算断层摄影(CT)和/或磁共振(MR)图像,并将它们集成到功能性神经显口(AFNI)神经影像分析分析中使用Python编写的函数的环境。从基于图像的电极表面和记录轨迹深度值计算电极坐标。坐标被翻译成适当的轨迹,并测试了对患者特异性或基于阿特拉斯的解剖结构的邻近。计算出3例患者群的最终DBS电极坐标(腹中间核[Vim],亚饱和核[STN]和GlobusPallidus pars Internala [GPI])。对于STN案例,然后分析MEL网站坐标,看看它们是否在STN的内部或外部。结果:对Vim,STN和GPI患者群体描述了最终DBS电极坐标。 115/169(68%)STN MER站点位于AFNI的TALAIRACH和TUTNOUX(TT)地图集的STN的1毫米。结论:DBSTAR是一种强大的工具套件,用于理解电极位置的解剖位置和背景,并且可以容易地用于成像,行为或电生理学分析。

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