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首页> 外文期刊>Journal of Neuroscience Methods >MRI-guided stereotaxic targeting in pigs based on a stereotaxic localizer box fitted with an isocentric frame and use of SurgiPlan computer-planning software.
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MRI-guided stereotaxic targeting in pigs based on a stereotaxic localizer box fitted with an isocentric frame and use of SurgiPlan computer-planning software.

机译:基于装有等心框架的立体定位盒并使用SurgiPlan计算机计划软件,在猪中进行MRI引导的立体定位。

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We present a stereotaxic procedure enabling MRI-guided isocentric stereotaxy in pigs. The procedure is based on the Leksell stereotaxic arch principle, and a stereotaxic localizer box with an incorporated fiducial marking system (sideplates) defining a stereotaxic space similar to the clinical Leksell system. The obtained MRIs can be imported for 3D-reconstruction and coordinate calculation in the clinical stereotaxic software planning system (Leksell SurgiPlan, Elekta AB, Sweden). After MRI the sideplates are replaced by a modified Leksell arch accommodating clinical standard manipulators for isocentric placement of DBS-electrodes, neural tracers and therapeutics in the calculated target coordinates. The mechanical accuracy of the device was within 0.3-0.5 mm. Stereotaxic MRIs were imported to the stereotaxic software planning system with a mean error of 0.4-0.5 mm and a max error of 0.8-0.9 mm. Application accuracy measured on a phantom and on inserted skull markers in nine pigs was within 1 mm in all planes. The intracerebral application accuracy found after placement of 10 manganese trajectories within the full extent of the intracerebral stereotaxic space in two minipigs was equally randomly distributed and within 0.7+/-0.4; 0.5+/-0.4; and 0.7+/-0.3mm in the X, Y, and Z plane. Injection of neural tracers in the subgenual gyrus of three minipigs and placement of encapsulated gene-modified cells in four minipigs confirmed the accuracy and functionality of the described procedure. We conclude that the devised technique and instrumentation enable high-precision stereotaxic procedures in pigs that may benefit future large animal neuroscience research and outline the technical considerations for a similar stereotaxic methodology in other animals.
机译:我们提出了一种立体定位程序,可以在猪中进行MRI引导的等中心立体定位。该程序基于Leksell立体定位弓原理,以及带有内置基准标记系统(侧板)的立体定位盒,该定位系统定义了类似于临床Leksell系统的立体定位空间。可以将获得的MRI导入临床立体定位软件计划系统(Leksell SurgiPlan,Elekta AB,瑞典)中进行3D重建和坐标计算。 MRI后,将侧板替换为可容纳临床标准操纵器的改良的Leksell弓形件,以将DBS电极,神经示踪剂和治疗剂等中心放置在计算出的目标坐标中。装置的机械精度在0.3-0.5毫米内。将立体定向MRI导入到立体定向软件计划系统中,平均误差为0.4-0.5 mm,最大误差为0.8-0.9 mm。在九只猪的幻影和插入的颅骨标记上测得的应用精度在所有平面上均在1 mm以内。在两个小型猪的脑立体定位空间的全部范围内放置10条锰轨迹后,发现的脑内应用准确性均等地随机分布在0.7 +/- 0.4以内; 0.5 +/- 0.4;在X,Y和Z平面上为0.7 +/- 0.3mm。在三个小型猪的亚属回中注射神经示踪剂,并将封装的基因修饰细胞放置在四个小型猪中,证实了所描述方法的准确性和功能性。我们得出的结论是,所设计的技术和仪器能够在猪中实现高精度的立体定位程序,这可能会有利于未来的大型动物神经科学研究,并概述了在其他动物中使用类似的立体定位方法的技术注意事项。

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