首页> 外文期刊>Frontiers in Veterinary Science >In vivo Diffusion Tensor Magnetic Resonance Tractography of the Sheep Brain: An Atlas of the Ovine White Matter Fiber Bundles
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In vivo Diffusion Tensor Magnetic Resonance Tractography of the Sheep Brain: An Atlas of the Ovine White Matter Fiber Bundles

机译:绵羊脑的体内扩散张量磁共振谱:绵羊白质纤维束图集。

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Diffusion Tensor Magnetic Resonance Imaging (DTI) allows to decode the mobility of water molecules in cerebral tissue, which is highly directional along myelinated fibers. By integrating the direction of highest water diffusion through the tissue, DTI Tractography enables a non-invasive dissection of brain fiber bundles. As such, this technique is a unique probe for in vivo characterization of white matter architecture. Unravelling the principal brain texture features of preclinical models that are advantageously exploited in experimental neuroscience is crucial to correctly evaluate investigational findings and to correlate them with real clinical scenarios. Although structurally similar to the human brain, the gyrencephalic ovine model has not yet been characterized by a systematic DTI study. Here we present the first in vivo sheep (ovis aries) tractography atlas, where the course of the main white matter fiber bundles of the ovine brain has been reconstructed. In the context of the EU’s Horizon EDEN2020 project, in vivo brain MRI protocol for ovine animal models was optimized on a 1.5T scanner. High resolution conventional MRI scans and DTI sequences (b-value=1000 s/mm2, 15 directions) were acquired on ten anesthetized sheep ovis aries, in order to define the diffusion features of normal adult ovine brain tissue. Topography of the ovine cortex was studied and DTI maps were derived, to perform DTI tractography reconstruction of the corticospinal tract, corpus callosum, fornix, visual pathway and occipitofrontal fascicle, bilaterally for all the animals. Binary masks of the tracts were then coregistered and reported in the space of a standard stereotaxic ovine reference system, to demonstrate the consistency of the fiber bundles and the minimal inter-subject variability in a unique tractography atlas. Our results determine the feasibility of a protocol to perform in vivo DTI tractography of the sheep, providing a reliable reconstruction and 3D rendering of major ovine fiber tracts underlying different neurological functions. Estimation of fiber directions and interactions would lead to a more comprehensive understanding of the sheep’s brain anatomy, potentially exploitable in preclinical experiments, thus representing a precious tool for veterinaries and researchers.
机译:扩散张量磁共振成像(DTI)可以解码脑组织中水分子的运动,该运动在髓鞘纤维上具有高度的方向性。通过整合水在组织中的最高扩散方向,DTI Tractography可以对脑纤维束进行无创解剖。这样,该技术是用于白质结构体内表征的独特探针。弄清临床神经模型的主要脑纹理特征(在实验神经科学中得到有利利用),对于正确评估研究结果并将其与实际临床情况相关联至关重要。尽管在结构上与人脑相似,但尚未通过系统的DTI研究来表征人脑型绵羊模型。在这里,我们介绍了第一个体内绵羊(ovis aries)超声成像图谱,其中重建了绵羊脑的主要白质纤维束的过程。在欧盟的Horizo​​n EDEN2020项目中,针对绵羊动物模型的体内大脑MRI协议在1.5T扫描仪上进行了优化。在十只麻醉的绵羊卵巢上采集高分辨率常规MRI扫描和DTI序列(b值= 1000 s / mm2,15个方向),以定义正常成人绵羊脑组织的扩散特征。研究了绵羊皮质的地形,并绘制了DTI图,以对所有动物进行双侧皮质脊髓束,call体,穹ni,视觉通路和枕额束的DTI图像重建。然后,在标准立体定向绵羊参考系统的空间中共同注册和报告道的二元蒙版,以在唯一的道谱图集中证明纤维束的一致性和最小的受试者间变异性。我们的结果确定了对绵羊进行体内DTI超声成像的协议的可行性,从而为不同神经功能下的主要绵羊纤维束提供可靠的重建和3D渲染。纤维方向和相互作用的估计将使人们对绵羊的大脑解剖结构有更全面的了解,这在临床前实验中可能会得到利用,从而为兽医和研究人员提供了一种宝贵的工具。

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