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将基于扩散张量成像的纤维束成像整合到脑深部电刺激手术中:文献综述

Integrating diffusion tensor imaging-based tractography into deep brain stimulation surgery: a review of the literature.

作者信息

Torres Cristina V, Manzanares Rafael, Sola Rafael G

机构信息

Department of Neurosurgery, University Hospital La Princesa, Madrid, Spain.

出版信息

Stereotact Funct Neurosurg. 2014;92(5):282-90. doi: 10.1159/000362937. Epub 2014 Sep 18.

Abstract

BACKGROUND

It has been generally accepted that deep brain stimulation (DBS) not only acts in the nucleus where it is being applied, as initially thought, but that chronic stimulation activates axons located in its scope, and that this activation can exert its effects in distant areas. Considering this, DBS target identification should be made based on techniques that identify white matter tracts, such as tractography, rather than only by identifying specific nuclei on conventional magnetic resonance imaging.

METHODS

In this study, we performed a review of the literature on the use of tractography in DBS surgery and provide an overview of the main results.

RESULTS

Tractography has been used in the field of DBS to help clarify relevant aspects in the selection of targets and in evaluating its therapeutic effects in movement disorders, psychiatric diseases and pain.

CONCLUSIONS

Studies are scarce so far, but they have provided data that, if confirmed, may optimize DBS surgery. Tractography might become a routine tool for DBS surgery in the near future.

摘要

背景

人们普遍认为,深部脑刺激(DBS)不仅如最初所认为的那样作用于其施加部位的核团,而且慢性刺激会激活位于其范围内的轴突,并且这种激活可在远处区域发挥作用。考虑到这一点,DBS靶点识别应基于识别白质束的技术,如纤维束成像,而不仅仅是通过在传统磁共振成像上识别特定核团来进行。

方法

在本研究中,我们对纤维束成像在DBS手术中的应用文献进行了综述,并概述了主要结果。

结果

纤维束成像已被用于DBS领域,以帮助阐明靶点选择中的相关方面,并评估其在运动障碍、精神疾病和疼痛中的治疗效果。

结论

到目前为止,相关研究较少,但它们提供的数据若得到证实,可能会优化DBS手术。纤维束成像可能在不久的将来成为DBS手术的常规工具。

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