Sun Peizhen, Parvathaneni Prasanna, Schilling Kurt G, Gao Yurui, Janve Vaibhav, Anderson Adam, Landman Bennett A
Electrical Engineering, Vanderbilt University, Nashville, TN USA.
Biomedical Engineering, Vanderbilt University, Nashville, TN USA ; Institute of Image Science, Vanderbilt University, Nashville, TN USA.
Proc SPIE Int Soc Opt Eng. 2015 Mar 17;9417. doi: 10.1117/12.2081443.
This effort is a continuation of development of a digital brain atlas of the common squirrel monkey, , a New World monkey with functional and microstructural organization of central nervous system similar to that of humans. Here, we present the integration of histology with multi-modal magnetic resonance imaging (MRI) atlas constructed from the brain of an adult female squirrel monkey. The central concept of this work is to use block face photography to establish an intermediate common space in coordinate system which preserves the high resolution in-plane resolution of histology while enabling 3-D correspondence with MRI. MRI acquisitions include high resolution T2 structural imaging (300 µm isotropic) and low resolution diffusion tensor imaging (600 um isotropic). MRI acquisitions include high resolution T2 structural imaging and high resolution diffusion tensor imaging (both 300 µm isotropic). Cortical regions were manually annotated on the co-registered volumes based on published histological sections in-plane. We describe mapping of histology and MRI based data of the common squirrel monkey and construction of a viewing tool that enable online viewing of these datasets. The previously descried atlas MRI is used for its deformation to provide accurate conformation to the MRI, thus adding information at the histological level to the MRI volume. This paper presents the mapping of single 2D image slice in block face as a proof of concept and this can be extended to map the atlas space in 3D coordinate system as part of the future work and can be loaded to an XNAT system for further use.
这项工作是普通松鼠猴数字脑图谱开发的延续,普通松鼠猴是一种新大陆猴,其中枢神经系统的功能和微观结构组织与人类相似。在此,我们展示了将组织学与从成年雌性松鼠猴大脑构建的多模态磁共振成像(MRI)图谱进行整合。这项工作的核心概念是使用块面摄影在坐标系中建立一个中间公共空间,该空间既能保留组织学的高分辨率平面分辨率,又能实现与MRI的三维对应。MRI采集包括高分辨率T2结构成像(各向同性300µm)和低分辨率扩散张量成像(各向同性600µm)。MRI采集包括高分辨率T2结构成像和高分辨率扩散张量成像(均为各向同性300µm)。基于已发表的平面组织学切片,在配准后的体积上手动标注皮质区域。我们描述了普通松鼠猴基于组织学和MRI数据的映射以及一种能够在线查看这些数据集的查看工具的构建。先前描述的图谱MRI用于其变形,以提供与MRI的精确匹配,从而在组织学层面为MRI体积添加信息。本文展示了块面中单个二维图像切片的映射作为概念验证,这可以扩展为在三维坐标系中映射图谱空间,作为未来工作的一部分,并可加载到XNAT系统中以供进一步使用。