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A Novel Brain Stimulation Technology Provides Compatibility with MRI

机译:一种新的脑刺激技术与MRI的兼容性提供了兼容性

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Clinical electrical stimulation systems — such as pacemakers and deep brain stimulators (DBS) — are an increasingly common therapeutic option to treat a large range of medical conditions. Despite their remarkable success, one of the significant limitations of these medical devices is the limited compatibility with magnetic resonance imaging (MRI), a standard diagnostic tool in medicine. During an MRI exam, the leads used with these devices, implanted in the body of the patient, act as an electric antenna potentially causing a large amount of energy to be absorbed in the tissue, which can lead to serious heat-related injury. This study presents a novel lead design that reduces the antenna effect and allows for decreased tissue heating during MRI. The optimal parameters of the wire design were determined by a combination of computational modeling and experimental measurements. The results of these simulations were used to build a prototype, which was tested in a gel phantom during an MRI scan. Measurement results showed a three-fold decrease in heating when compared to a commercially available DBS lead. Accordingly, the proposed design may allow a significantly increased number of patients with medical implants to have safe access to the diagnostic benefits of MRI.
机译:临床电刺激系统 - 如起搏器和深脑刺激剂(DBS) - 是治疗大范围的医疗病症的越来越常见的治疗选择。尽管取得了显着成功,但这些医疗器械的一个重要局限性是与磁共振成像(MRI)的相容性有限,医学中的标准诊断工具。在MRI考试期间,植入患者体内的这些装置使用的引线充当电气天线可能导致在组织中吸收大量能量,这可能导致严重的热损伤。本研究提出了一种新的铅设计,可减少天线效应,并允许在MRI期间减少组织加热。电线设计的最佳参数通过计算建模和实验测量的组合来确定。这些模拟的结果用于构建原型,该原型在MRI扫描期间在凝胶幻像中测试。与市售的DBE铅相比,测量结果表明加热的三倍降低。因此,所提出的设计可以允许医疗植入物的显着增加,以安全地访问MRI的诊断益处。

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