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大鼠脑的活体扩散张量成像纤维束造影:帕西诺斯图谱空间中主要纤维束图谱及组织学比较

In vivo DTI tractography of the rat brain: an atlas of the main tracts in Paxinos space with histological comparison.

作者信息

Figini Matteo, Zucca Ileana, Aquino Domenico, Pennacchio Paolo, Nava Simone, Di Marzio Alessandro, Preti Maria Giulia, Baselli Guseppe, Spreafico Roberto, Frassoni Carolina

机构信息

Scientific Direction, IRCCS Fondazione Istituto Neurologico "C. Besta", Milano, Italy; Dipartimento di Elettronica, Informazione e Bioingegneria, Politecnico di Milano, Italy.

Scientific Direction, IRCCS Fondazione Istituto Neurologico "C. Besta", Milano, Italy.

出版信息

Magn Reson Imaging. 2015 Apr;33(3):296-303. doi: 10.1016/j.mri.2014.11.001. Epub 2014 Dec 5.

Abstract

Diffusion tensor imaging (DTI) is a magnetic resonance modality that permits to characterize the orientation and integrity of white matter (WM). DTI-based tractography techniques, allowing the virtual reconstruction of WM tract pathways, have found wide application in preclinical neurological research. Recently, anatomically detailed rat brain atlases including DTI data were constructed from ex vivo DTI images, but tractographic atlases of normal rats in vivo are still lacking. We propose here a probabilistic tractographic atlas of the main WM tracts in the healthy rat brain based on in vivo DTI acquisition. Our study was carried out on 10 adult female Sprague-Dawley rats using a 7T preclinical scanner. The MRI protocol permitted a reliable reconstruction of the main rat brain bundles: corpus callosum, cingulum, external capsule, internal capsule, anterior commissure, optic tract. The reconstructed fibers were compared with histological data, proving the viability of in vivo DTI tractography in the rat brain with the proposed acquisition and processing protocol. All the data were registered to a rat brain template in the coordinate system of the commonly used atlas by Paxinos and Watson; then the individual tracts were binarized and averaged, obtaining a probabilistic atlas in Paxinos-Watson space of the main rat brain WM bundles. With respect to the recent high-resolution MRI atlases, the resulting tractographic atlas, available online, provides complementary information about the average anatomical position of the considered WM tracts and their variability between normal animals. Furthermore, reference values for the main DTI-derived parameters, mean diffusivity and fractional anisotropy, were provided. Both these results can be used as references in preclinical studies on pathological rat models involving potential alterations of WM.

摘要

扩散张量成像(DTI)是一种磁共振成像方式,可用于描述白质(WM)的方向和完整性。基于DTI的纤维束成像技术能够虚拟重建WM纤维束路径,已在临床前神经学研究中得到广泛应用。最近,通过离体DTI图像构建了包含DTI数据的解剖学详细大鼠脑图谱,但仍缺乏正常大鼠活体纤维束成像图谱。在此,我们基于活体DTI采集提出了健康大鼠脑主要WM纤维束的概率性纤维束成像图谱。我们使用7T临床前扫描仪对10只成年雌性Sprague-Dawley大鼠进行了研究。MRI协议允许可靠地重建大鼠脑的主要束:胼胝体、扣带、外囊、内囊、前连合、视束。将重建的纤维与组织学数据进行比较,证明了采用所提出的采集和处理协议在大鼠脑中进行活体DTI纤维束成像的可行性。所有数据都被注册到Paxinos和Watson常用图谱坐标系中的大鼠脑模板中;然后将各个纤维束进行二值化并平均,在Paxinos-Watson空间中获得大鼠脑主要WM束的概率性图谱。与最近的高分辨率MRI图谱相比,所得的在线纤维束成像图谱提供了有关所考虑WM束的平均解剖位置及其在正常动物之间变异性的补充信息。此外,还提供了主要DTI衍生参数(平均扩散率和分数各向异性)的参考值。这两个结果都可作为涉及WM潜在改变的病理大鼠模型临床前研究的参考。

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