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Localization of Metal Electrodes in the Intact Rat Brain Using Registration of 3D Microcomputed Tomography Images to a Magnetic Resonance Histology Atlas

机译:使用3D微计算机断层扫描图像向磁共振组织学图谱的配准在完整大鼠大脑中定位金属电极

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摘要

Simultaneous neural recordings taken from multiple areas of the rodent brain are garnering growing interest because of the insight they can provide about spatially distributed neural circuitry. The promise of such recordings has inspired great progress in methods for surgically implanting large numbers of metal electrodes into intact rodent brains. However, methods for localizing the precise location of these electrodes have remained severely lacking. Traditional histological techniques that require slicing and staining of physical brain tissue are cumbersome and become increasingly impractical as the number of implanted electrodes increases. Here we solve these problems by describing a method that registers 3D computed tomography (CT) images of intact rat brains implanted with metal electrode bundles to a magnetic resonance imaging histology (MRH) atlas. Our method allows accurate visualization of each electrode bundle’s trajectory and location without removing the electrodes from the brain or surgically implanting external markers. In addition, unlike physical brain slices, once the 3D images of the electrode bundles and the MRH atlas are registered, it is possible to verify electrode placements from many angles by “reslicing” the images along different planes of view. Furthermore, our method can be fully automated and easily scaled to applications with large numbers of specimens. Our digital imaging approach to efficiently localizing metal electrodes offers a substantial addition to currently available methods, which, in turn, may help accelerate the rate at which insights are gleaned from rodent network neuroscience.
机译:从啮齿动物大脑的多个区域获取的同时神经记录越来越引起人们的兴趣,因为它们可以提供有关空间分布神经回路的见识。这种录音的前景激发了通过外科手术将大量金属电极植入完整的啮齿动物大脑的方法的巨大进步。然而,仍然严重缺乏用于定位这些电极的精确位置的方法。需要对脑组织进行切片和染色的传统组织学技术比较麻烦,并且随着植入电极数量的增加而变得越来越不切实际。在这里,我们通过描述一种将植入了金属电极束的完整大鼠大脑的3D计算机断层扫描(CT)图像注册到磁共振成像组织学(MRH)地图集的方法来解决这些问题。我们的方法可以准确地显示每个电极束的轨迹和位置,而无需从大脑中移出电极或通过手术植入外部标记物。此外,与物理脑切片不同,一旦记录了电极束和MRH地图集的3D图像,就可以通过沿不同视角“复制”图像从多个角度验证电极位置。此外,我们的方法可以完全自动化,并且可以轻松扩展到具有大量样本的应用。我们用于有效定位金属电极的数字成像方法为当前可用的方法提供了实质性补充,从而可以帮助加快从啮齿动物网络神经科学收集见解的速度。

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