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小动物脑手术,无需脑图谱,也无需立体定位框架。

Small animal brain surgery with neither a brain atlas nor a stereotaxic frame.

机构信息

The Bruce and Ruth Rappaport Institue and Faculty of Medicine, the Technion, Haifa, Israel.

The Bruce and Ruth Rappaport Institue and Faculty of Medicine, the Technion, Haifa, Israel.

出版信息

J Neurosci Methods. 2024 Nov;411:110272. doi: 10.1016/j.jneumeth.2024.110272. Epub 2024 Aug 28.

DOI:10.1016/j.jneumeth.2024.110272
PMID:39209161
Abstract

BACKGROUND

Stereotaxic surgery is a cornerstone in brain research for the precise positioning of electrodes and probes, but its application is limited to species with available brain atlases and tailored stereotaxic frames. Addressing this limitation, we introduce an alternative technique for small animal brain surgery that requires neither an aligned brain atlas nor a stereotaxic frame.

NEW METHOD

The new method requires an ex-vivo high-contrast MRI brain scan of one specimen and access to a micro-CT scanner. The process involves attaching miniature markers to the skull, followed by CT scanning of the head. Subsequently, MRI and CT images are co-registered using standard image processing software and the targets for brain recordings are marked in the MRI image. During surgery, the animal's head is stabilized in any convenient orientation, and the probe's 3D position and angle are tracked using a multi-camera system. We have developed a software that utilizes the on-skull markers as fiducial points to align the CT/MRI 3D model with the surgical positioning system, and in turn instructs the surgeon how to move the probe to reach the targets within the brain.

RESULTS

Our technique allows the execution of insertion tracks connecting two points in the brain. We successfully applied this method for neuropixels probe positioning in owls, quails, and mice, demonstrating its versatility.

COMPARISON WITH EXISTING METHODS

We present an alternative to traditional stereotaxic brain surgeries that does not require established stereotaxic tools. Thus, this method is especially of advantage for research in non-standard and novel animal models.

摘要

背景

立体定向手术是脑科学中精确定位电极和探针的基石,但它的应用仅限于有可用脑图谱和定制立体定向架的物种。为了解决这个限制,我们引入了一种替代小动物脑手术的技术,该技术既不需要对齐的脑图谱,也不需要立体定向架。

新方法

新方法需要对一个标本进行离体高对比度 MRI 脑部扫描,并能够使用微 CT 扫描仪。该过程包括将微型标记物附着到颅骨上,然后对头进行 CT 扫描。随后,使用标准图像处理软件对 MRI 和 CT 图像进行配准,并在 MRI 图像中标记脑记录的目标。在手术过程中,动物的头部以任何方便的方向固定,使用多相机系统跟踪探头的 3D 位置和角度。我们开发了一种软件,该软件利用颅骨上的标记作为基准点,将 CT/MRI 3D 模型与手术定位系统对齐,并指导外科医生如何移动探头以到达大脑内的目标。

结果

我们的技术允许执行连接大脑中两点的插入轨迹。我们成功地将这种方法应用于猫头鹰、鹌鹑和老鼠的神经像素探头定位,证明了它的通用性。

与现有方法的比较

我们提出了一种替代传统立体定向脑手术的方法,该方法不需要现有的立体定向工具。因此,这种方法特别有利于非标准和新型动物模型的研究。

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