Diffusion Tensor Imaging of the Basal Ganglia for Functional Neurosurgery Applications.

Q2 Medicine Progress in neurological surgery Pub Date : 2018-01-01 Epub Date: 2018-01-12 DOI:10.1159/000480766
Francesco Sammartino, Mojgan Hodaie
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引用次数: 6

Abstract

Since its introduction, diffusion tensor imaging (DTI) has become an important tool in neuroscience given its unprecedented ability to image brain white matter in vivo. The interest in understanding the mechanisms of action of Deep Brain Stimulation in different targets and indications, together with the constant drive towards the improvement in long-term clinical outcomes, has found a logical complement in the application of tractography in this field. Diffusion tensor imaging has been traditionally associated with an increased susceptibility to MRI artifacts, and expensive computational resources. Recent advances have however improved these restrictions, allowing for countless applications in Neurosurgery, as demonstrated by the large number of original research papers published in the last decade. In this chapter, we review the current status of the implementation of DTI during DBS of the basal ganglia, discussing the findings, potential challenges and the expected improvements in surgical outcomes deriving by the routine use of tractography in functional neurosurgery.

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基底神经节弥散张量成像在功能性神经外科中的应用。
自问世以来,弥散张量成像(diffusion tensor imaging, DTI)已成为神经科学领域的重要工具,因为它具有前所未有的对活体脑白质成像的能力。对了解脑深部刺激在不同靶点和适应症中的作用机制的兴趣,以及对改善长期临床结果的不断推动,已经在该领域的应用中找到了一个合乎逻辑的补充。传统上,扩散张量成像与对MRI伪影的敏感性增加和昂贵的计算资源有关。然而,最近的进展已经改善了这些限制,允许在神经外科的无数应用,正如在过去十年中发表的大量原创研究论文所证明的那样。在本章中,我们回顾了基底节区DTI在DBS中的实施现状,讨论了在功能神经外科中常规使用束状造影所获得的发现、潜在挑战和预期的手术结果改善。
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期刊介绍: Published since 1966, this series has become universally recognized as the most significant group of books serving neurological surgeons. Volumes feature contributions from distinguished international surgeons, who brilliantly review the literature from the perspective of their own personal experience. The result is a series of works providing critical distillations of developments of central importance to the theory and practice of neurological surgery.
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