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Reconstruction and Dissection of the Entire Human Visual Pathway Using Diffusion Tensor MRI

机译:使用扩散张量MRI重建和解剖整个人类视觉通路

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摘要

The human visual system comprises elongated fiber pathways that represent a serious challenge for diffusion tensor imaging (DTI) and fiber tractography: while tracking of frontal fiber bundles may be compromised by the nearby presence of air-filled cavities, nerves, and eye muscles, the anatomic courses of the three main fiber bundles of the optic radiation are subject to pronounced inter-subject variability. Here, tractography of the entire visual pathway was achieved in six healthy subjects at high spatial accuracy, that is, at 1.8 mm isotropic spatial resolution, without susceptibility-induced distortions, and in direct correspondence to anatomic MRI structures. Using a newly developed diffusion-weighted single-shot STEAM MRI sequence, we were able to track the thin optic nerve including the nasal optic nerve fibers, which cross the optic chiasm, and to dissect the optic radiation into the anterior ventral bundle (Meyer's loop), the central bundle, and the dorsal bundle. Apart from scientific applications these results in single subjects promise advances in the planning of neurosurgical procedures to avoid unnecessary damage to the visual fiber system.
机译:人类的视觉系统包括细长的纤维通路,这对弥散张量成像(DTI)和纤维束摄影术提出了严峻的挑战:尽管附近存在充气的洞,神经和眼肌,但额叶纤维束的追踪可能会受到影响。光学辐射的三个主要纤维束的解剖过程受到明显的受试者间变化。在这里,六名健康受试者以高空间精度(即各向同性空间分辨率为1.8?mm),没有药敏性引起的畸变以及与解剖学MRI结构的直接对应关系,在6位健康受试者中完成了整个视觉路径的影像学检查。使用新开发的扩散加权单次STEAM MRI序列,我们能够追踪穿过视交叉的包括鼻侧视神经纤维在内的细视神经,并将视线分解为前腹束(迈耶环) ),中央束和背束。除科​​学应用外,单人受试者的这些结果有望在神经外科手术计划的规划方面取得进展,从而避免对视觉纤维系统造成不必要的损害。

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