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The Human Connectome Project and Beyond: Initial Applications of 300 mT/m Gradients

机译:人类Connectome项目及以后:300 mT / m梯度的初始应用

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摘要

The engineering of a 3T human MRI scanner equipped with 300 mT/m gradients – the strongest gradients ever built for an in vivo human MRI scanner – was a major component of the NIH Blueprint Human Connectome Project (HCP). This effort was motivated by the HCP’s goal of mapping, as completely as possible, the macroscopic structural connections of the in vivo healthy, adult human brain using diffusion tractography. Yet, the 300 mT/m gradient system is well suited to many additional types of diffusion measurements. Here, we present three initial applications of the 300mT/m gradients that fall outside the immediate scope of the HCP. These include: 1) diffusion tractography to study the anatomy of consciousness and the mechanisms of brain recovery following traumatic coma; 2) q-space measurements of axon diameter distributions in the in vivo human brain and 3) postmortem diffusion tractography as an adjunct to standard histopathological analysis. We show that the improved sensitivity and diffusion-resolution provided by the gradients is rapidly enabling human applications of techniques that were previously possible only for in vitro and animal models on small-bore scanners, thereby creating novel opportunities to map the microstructure of the human brain in health and disease.
机译:配备300 mT / m梯度的3T人体MRI扫描仪的工程设计是有史以来为体内人体MRI扫描仪建立的最强的梯度,是NIH蓝图人体连接基因组计划(HCP)的主要组成部分。 HCP的目标是通过扩散束线图尽可能完整地绘制体内健康的成年人类大脑的宏观结构联系,从而推动了这项工作。然而,300 mT / m的梯度系统非常适合于许多其他类型的扩散测量。在这里,我们介绍了300mT / m梯度的三个初始应用,这些应用不在HCP的直接范围之内。这些包括:1)弥散束摄影术,研究意识的解剖结构和创伤性昏迷后脑恢复的机制; 2)体内人脑中轴突直径分布的q空间测量,以及3)作为标准组织病理学分析的辅助手段的验尸扩散束摄影。我们表明,由梯度提供的改进的灵敏度和扩散分辨率迅速使人类能够应用以前仅适用于小口径扫描仪上的体外和动物模型的技术,从而创造了映射人脑微观结构的新机会在健康和疾病方面。

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