Nitzsche Björn, Frey Stephen, Collins Louis D, Seeger Johannes, Lobsien Donald, Dreyer Antje, Kirsten Holger, Stoffel Michael H, Fonov Vladimir S, Boltze Johannes
Department of Cell Therapy, Fraunhofer Institute for Cell Therapy and Immunology Leipzig, Germany ; Faculty of Veterinary Medicine, Institute of Anatomy, Histology and Embryology, University of Leipzig Leipzig, Germany.
McConnell Brain Imaging Centre, Montreal Neurological Institute and Hospital, McGill University Montreal, QC, Canada.
Front Neuroanat. 2015 Jun 4;9:69. doi: 10.3389/fnana.2015.00069. eCollection 2015.
Standard stereotaxic reference systems play a key role in human brain studies. Stereotaxic coordinate systems have also been developed for experimental animals including non-human primates, dogs, and rodents. However, they are lacking for other species being relevant in experimental neuroscience including sheep. Here, we present a spatial, unbiased ovine brain template with tissue probability maps (TPM) that offer a detailed stereotaxic reference frame for anatomical features and localization of brain areas, thereby enabling inter-individual and cross-study comparability. Three-dimensional data sets from healthy adult Merino sheep (Ovis orientalis aries, 12 ewes and 26 neutered rams) were acquired on a 1.5 T Philips MRI using a T1w sequence. Data were averaged by linear and non-linear registration algorithms. Moreover, animals were subjected to detailed brain volume analysis including examinations with respect to body weight (BW), age, and sex. The created T1w brain template provides an appropriate population-averaged ovine brain anatomy in a spatial standard coordinate system. Additionally, TPM for gray (GM) and white (WM) matter as well as cerebrospinal fluid (CSF) classification enabled automatic prior-based tissue segmentation using statistical parametric mapping (SPM). Overall, a positive correlation of GM volume and BW explained about 15% of the variance of GM while a positive correlation between WM and age was found. Absolute tissue volume differences were not detected, indeed ewes showed significantly more GM per bodyweight as compared to neutered rams. The created framework including spatial brain template and TPM represent a useful tool for unbiased automatic image preprocessing and morphological characterization in sheep. Therefore, the reported results may serve as a starting point for further experimental and/or translational research aiming at in vivo analysis in this species.
标准立体定向参考系统在人类大脑研究中起着关键作用。立体定向坐标系也已针对包括非人灵长类动物、狗和啮齿动物在内的实验动物开发出来。然而,对于实验神经科学中其他相关物种,如绵羊,却缺乏这样的系统。在此,我们展示了一个具有组织概率图(TPM)的空间无偏绵羊脑模板,该模板为脑区的解剖特征和定位提供了详细的立体定向参考框架,从而实现个体间和跨研究的可比性。使用T1w序列在1.5T飞利浦MRI上采集了健康成年美利奴绵羊(东方羊,12只母羊和26只去势公羊)的三维数据集。通过线性和非线性配准算法对数据进行平均。此外,对动物进行了详细的脑容量分析,包括对体重(BW)、年龄和性别的检查。创建的T1w脑模板在空间标准坐标系中提供了合适的群体平均绵羊脑解剖结构。此外,灰质(GM)、白质(WM)和脑脊液(CSF)分类的TPM能够使用统计参数映射(SPM)进行基于自动先验的组织分割。总体而言,GM体积与BW的正相关解释了GM方差的约15%,同时发现WM与年龄之间存在正相关。未检测到绝对组织体积差异,实际上,与去势公羊相比,母羊每体重的GM含量显著更高。所创建的包括空间脑模板和TPM的框架是绵羊无偏自动图像预处理和形态学表征的有用工具。因此,所报告的结果可作为进一步实验和/或转化研究的起点,旨在对该物种进行体内分析。