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用于立体定向手术的发育中和成年小鼠大脑的磁共振成像与微型计算机断层扫描联合图谱。

Magnetic resonance imaging and micro-computed tomography combined atlas of developing and adult mouse brains for stereotaxic surgery.

作者信息

Aggarwal M, Zhang J, Miller M I, Sidman R L, Mori S

机构信息

Russell H. Morgan Department of Radiology and Radiological Science, Johns Hopkins University School of Medicine, Baltimore, MD 21205, USA.

出版信息

Neuroscience. 2009 Sep 15;162(4):1339-50. doi: 10.1016/j.neuroscience.2009.05.070. Epub 2009 May 30.

Abstract

Stereotaxic atlases of the mouse brain are important in neuroscience research for targeting of specific internal brain structures during surgical operations. The effectiveness of stereotaxic surgery depends on accurate mapping of the brain structures relative to landmarks on the skull. During postnatal development in the mouse, rapid growth-related changes in the brain occur concurrently with growth of bony plates at the cranial sutures, therefore adult mouse brain atlases cannot be used to precisely guide stereotaxis in developing brains. In this study, three-dimensional stereotaxic atlases of C57BL/6J mouse brains at six postnatal developmental stages: postnatal day (P) 7, P14, P21, P28, P63 and in adults (P140-P160) were developed, using diffusion tensor imaging (DTI) and micro-computed tomography (CT). At present, most widely-used stereotaxic atlases of the mouse brain are based on histology, but the anatomical fidelity of ex vivo atlases to in vivo mouse brains has not been evaluated previously. To account for ex vivo tissue distortion due to fixation as well as individual variability in the brain, we developed a population-averaged in vivo magnetic resonance imaging adult mouse brain stereotaxic atlas, and a distortion-corrected DTI atlas was generated by nonlinearly warping ex vivo data to the population-averaged in vivo atlas. These atlas resources were developed and made available through a new software user-interface with the objective of improving the accuracy of targeting brain structures during stereotaxic surgery in developing and adult C57BL/6J mouse brains.

摘要

小鼠脑立体定位图谱在神经科学研究中对于手术操作时靶向特定脑内部结构非常重要。立体定向手术的有效性取决于相对于颅骨上标志物的脑结构精确映射。在小鼠出生后的发育过程中,与生长相关的脑快速变化与颅缝处骨板的生长同时发生,因此成年小鼠脑图谱不能用于精确指导发育中脑的立体定位。在本研究中,利用扩散张量成像(DTI)和微型计算机断层扫描(CT),开发了C57BL/6J小鼠脑在六个出生后发育阶段:出生后第(P)7天、P14、P21、P28、P63以及成年期(P140 - P160)的三维立体定位图谱。目前,大多数广泛使用的小鼠脑立体定位图谱基于组织学,但此前尚未评估离体图谱对活体小鼠脑的解剖学保真度。为了解决由于固定导致的离体组织变形以及脑内个体差异,我们开发了一个群体平均的活体磁共振成像成年小鼠脑立体定位图谱,并通过将离体数据非线性扭曲到群体平均的活体图谱来生成一个失真校正的DTI图谱。这些图谱资源通过一个新的软件用户界面进行开发并提供,目的是提高在发育中和成年C57BL/6J小鼠脑的立体定向手术中靶向脑结构的准确性。

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