Vision Lab (Department of Physics), University of Antwerp, Antwerp, Belgium.
Neuroimage. 2011 Oct 15;58(4):975-83. doi: 10.1016/j.neuroimage.2011.06.063. Epub 2011 Jul 1.
Rats are widely used in experimental neurobiological research, and rat brain atlases are important resources for identifying brain regions in the context of experimental microsurgery, tissue sampling, and neuroimaging, as well as comparison of findings across experiments. Currently, most available rat brain atlases are constructed from histological material derived from single specimens, and provide two-dimensional or three-dimensional (3D) outlines of diverse brain regions and fiber tracts. Important limitations of such atlases are that they represent individual specimens, and that finer details of tissue architecture are lacking. Access to more detailed 3D brain atlases representative of a population of animals is needed. Diffusion tensor imaging (DTI) is a unique neuroimaging modality that provides sensitive information about orientation structure in tissues, and is widely applied in basic and clinical neuroscience investigations. To facilitate analysis and assignment of location in rat brain neuroimaging investigations, we have developed a population-averaged three-dimensional DTI atlas of the normal adult Sprague Dawley rat brain. The atlas is constructed from high resolution ex vivo DTI images, which were nonlinearly warped into a population-averaged in vivo brain template. The atlas currently comprises a selection of manually delineated brain regions, the caudate-putamen complex, globus pallidus, entopeduncular nucleus, substantia nigra, external capsule, corpus callosum, internal capsule, cerebral peduncle, fimbria of the hippocampus, fornix, anterior commisure, optic tract, and stria terminalis. The atlas is freely distributed and potentially useful for several purposes, including automated and manual delineation of rat brain structural and functional imaging data.
大鼠被广泛应用于实验神经生物学研究,大鼠脑图谱是在实验性微创手术、组织采样和神经影像学以及比较实验结果中识别脑区的重要资源。目前,大多数现有的大鼠脑图谱是由单个标本的组织学材料构建的,提供了不同脑区和纤维束的二维或三维(3D)轮廓。这种图谱的重要局限性在于它们代表了个体标本,并且缺乏组织结构的更精细细节。需要获得更多代表动物群体的详细 3D 脑图谱。弥散张量成像(DTI)是一种独特的神经影像学方式,提供了关于组织中取向结构的敏感信息,广泛应用于基础和临床神经科学研究中。为了便于在大鼠脑影像学研究中进行分析和定位,我们开发了一种正常成年 Sprague Dawley 大鼠脑的群体平均三维 DTI 图谱。该图谱是由高分辨率离体 DTI 图像构建的,这些图像经过非线性变形为群体平均的活体脑模板。该图谱目前包括手动勾画的脑区选择,尾状核-壳核复合体、苍白球、脚间核、黑质、外囊、胼胝体、内囊、大脑脚、海马的穹窿、穹窿连合、视束和终纹。该图谱免费分发,具有多种用途,包括大鼠脑结构和功能成像数据的自动和手动勾画。