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White matter anatomy of the human deep brain revisited with high resolution DTI fibre tracking

机译:高分辨率DTI纤维追踪技术重新探究了人类深部大脑的白质解剖

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摘要

Background and Purpose: Deep white matter (WM) fascicles play a major, yet poorly understood, role in the overall connectivity of human brain. Better knowledge of their anatomy is requisite to understand the clinical correlates of their lesions and develop targeted treatments. We investigated whether MR-based diffusion tensor imaging (DTI) and fibre tracking could reveal in vivo, in explicit details, the 3D WM architecture within the subthalamic region and the internal capsule. Methods: High-resolution DTI images were acquired on six healthy volunteers on a three Tesla MR scanner. We studied using single-subject analysis WM fascicles within the subthalamic region and the internal capsule, as follows: DTI deterministic fibre tracking (FT) of fascicles; embedding fascicles in the volume-rendered brain coupled with a triplanar view; rigorous anatomic labelling of each fascicle according to classical knowledge as described by pioneer neuroanatomists. Deterministic FT effects were taken into account. Results: We charted most of WM fascicles of the deep brain, in particular large and complex fascicles such as the basal forebrain bundle and the ansa lenticularis. A topographic classification of subthalamic fascicles was proposed into three groups: the cerebellorubral, the reticulo-dorsal and the tegmento-peripheral one. Conclusions: Beyond to demonstrate the feasibility of imaging the deepest WM fascicles in vivo, our results pave the way for a better understanding of the brain connectivity and for developing targeted neuromodulation. © 2011 Elsevier Masson SAS.
机译:背景和目的:深白质(WM)束在人脑的整体连通性中起主要作用,但人们对其了解甚少。要了解其病变的临床相关性并制定有针对性的治疗方法,必须更好地了解其解剖结构。我们调查了基于MR的扩散张量成像(DTI)和纤维跟踪是否可以在体内显示出丘脑下丘脑区域和内部囊膜中的3D WM体系结构。方法:在三名Tesla MR扫描仪上,从六名健康志愿者那里获得了高分辨率的DTI图像。我们使用丘脑下区域和内部囊膜的单对象分析WM分册进行了研究,如下所示:DTI分册的确定性纤维追踪(FT);将分册嵌入体积渲染的大脑中,并带有三眼视图;根据先驱神经解剖学家描述的经典知识,对每个分册进行严格的解剖学标记。确定性FT效应已考虑在内。结果:我们绘制了大脑深部的大部分WM分册,特别是大型和复杂的分册,例如基底前脑束和lenta lenticularis。丘脑下束的地形学分类被分为三类:小脑丘脑,网状背侧和背盖周缘。结论:除了证明在体内对最深的WM分束进行成像的可行性外,我们的研究结果还为更好地了解大脑的连通性和发展靶向神经调节铺平了道路。 ©2011 Elsevier Masson SAS。

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