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Ultra-high field magnetic resonance imaging of the basal ganglia and related structures

机译:基底节及其相关结构的超高场磁共振成像

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摘要

Deep brain stimulation is a treatment for Parkinson's disease and other related disorders, involving the surgical placement of electrodes in the deeply situated basal ganglia or thalamic structures. Good clinical outcome requires accurate targeting. However, due to limited visibility of the target structures on routine clinical MR images, direct targeting of structures can be challenging. Non-clinical MR scanners with ultra-high magnetic field (7T or higher) have the potential to improve the quality of these images. This technology report provides an overview of the current possibilities of visualizing deep brain stimulation targets and their related structures with the aid of ultra-high field MRI. Reviewed studies showed improved resolution, contrast- and signal-to-noise ratios at ultra-high field. Sequences sensitive to magnetic susceptibility such as T2* and susceptibility weighted imaging and their maps in general showed the best visualization of target structures, including a separation between the subthalamic nucleus and the substantia nigra, the lamina pallidi medialis and lamina pallidi incompleta within the globus pallidus and substructures of the thalamus, including the ventral intermediate nucleus (Vim). This shows that the visibility, identification, and even subdivision of the small deep brain stimulation targets benefit from increased field strength. Although ultra-high field MR imaging is associated with increased risk of geometrical distortions, it has been shown that these distortions can be avoided or corrected to the extent where the effects are limited. The availability of ultra-high field MR scanners for humans seems to provide opportunities for a more accurate targeting for deep brain stimulation in patients with Parkinson's disease and related disorders.
机译:深度脑刺激是对帕金森氏病和其他相关疾病的一种治疗方法,涉及将电极手术放置在位置较深的基底神经节或丘脑结构中。良好的临床结果需要准确的靶向。但是,由于常规临床MR图像上目标结构的可见性有限,因此直接瞄准结构可能具有挑战性。具有超高磁场(7T或更高)的非临床MR扫描仪有可能改善这些图像的质量。该技术报告概述了借助超高场MRI可视化深部脑刺激目标及其相关结构的当前可能性。审查的研究表明,在超高场下,分辨率,对比度和信噪比均得到改善。对磁化率敏感的序列(例如T2 * 和磁化率加权成像)及其图谱总体上显示了最佳的靶标结构可视化,包括丘脑下核和黑质之间的分离,中层薄层和苍白球和丘脑亚结构内的腹板不全,包括腹中核(Vim)。这表明小型深部脑刺激目标的可见性,识别性甚至细分性都受益于增强的场强。尽管超高场MR成像会增加几何畸变的风险,但已经表明,可以避免这些畸变或将其校正到影响受限的程度。可供人类使用的超高场MR扫描仪似乎为帕金森氏病和相关疾病患者的深部脑刺激提供了更准确的目标。

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