Department of Neuroimaging, Cuban Neuroscience Center Havana, Cuba.
Front Neuroinform. 2011 Nov 24;5:26. doi: 10.3389/fninf.2011.00026. eCollection 2011.
Over the last decade, several papers have focused on the construction of highly detailed mouse high field magnetic resonance image (MRI) templates via non-linear registration to unbiased reference spaces, allowing for a variety of neuroimaging applications such as robust morphometric analyses. However, work in rats has only provided medium field MRI averages based on linear registration to biased spaces with the sole purpose of approximate functional MRI (fMRI) localization. This precludes any morphometric analysis in spite of the need of exploring in detail the neuroanatomical substrates of diseases in a recent advent of rat models. In this paper we present a new in vivo rat T2 MRI template set, comprising average images of both intensity and shape, obtained via non-linear registration. Also, unlike previous rat template sets, we include white and gray matter probabilistic segmentations, expanding its use to those applications demanding prior-based tissue segmentation, e.g., statistical parametric mapping (SPM) voxel-based morphometry. We also provide a preliminary digitalization of latest Paxinos and Watson atlas for anatomical and functional interpretations within the cerebral cortex. We confirmed that, like with previous templates, forepaw and hindpaw fMRI activations can be correctly localized in the expected atlas structure. To exemplify the use of our new MRI template set, were reported the volumes of brain tissues and cortical structures and probed their relationships with ontogenetic development. Other in vivo applications in the near future can be tensor-, deformation-, or voxel-based morphometry, morphological connectivity, and diffusion tensor-based anatomical connectivity. Our template set, freely available through the SPM extension website, could be an important tool for future longitudinal and/or functional extensive preclinical studies.
在过去的十年中,已有几篇论文专注于通过非线性配准构建高度详细的小鼠高磁场磁共振图像 (MRI) 模板,以实现各种神经影像学应用,如稳健的形态测量分析。然而,大鼠的研究仅提供了基于线性配准到有偏差的空间的中磁场 MRI 平均值,目的是进行近似功能磁共振成像 (fMRI) 定位。这排除了任何形态测量分析,尽管需要在最近出现的大鼠模型中详细探索疾病的神经解剖学基础。在本文中,我们提出了一种新的大鼠 T2 MRI 模板集,包括通过非线性配准获得的强度和形状的平均图像。此外,与以前的大鼠模板集不同,我们包括白质和灰质的概率分割,将其用途扩展到需要基于先验的组织分割的应用程序,例如统计参数映射 (SPM) 体素形态学。我们还提供了最新的 Paxinos 和 Watson 图谱的初步数字化,以便在大脑皮层内进行解剖和功能解释。我们证实,与以前的模板一样,可以正确地将前爪和后爪 fMRI 激活定位到预期的图谱结构中。为了举例说明我们新的 MRI 模板集的用途,报告了脑组织和皮质结构的体积,并探讨了它们与个体发育发展的关系。在不久的将来,其他体内应用可能是张量、变形或体素形态学、形态连通性以及基于扩散张量的解剖连通性。我们的模板集可通过 SPM 扩展网站免费获得,这可能是未来纵向和/或功能广泛的临床前研究的重要工具。