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Factors Associated with Heating Efficiency in Transcranial Focused Ultrasound Therapy

机译:与经颅重聚焦疗法的加热效率相关的因素

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摘要

Transcranial magnetic resonance-guided focused ultrasound (FUS) therapy is a less invasive stereotactic treatment for tremor and other movement disorders. A sufficiently high temperature in the target brain tissue is crucial during ablation procedures for good outcomes. Therefore, maximizing the heating efficiency is critical in cases where high temperature cannot be achieved because of patient-related characteristics. However, a strategy to achieve the desired therapeutic temperature with FUS has not yet been established. This study aimed to investigate the procedural factors associated with heating efficiency in FUS. We retrospectively reviewed and analyzed data from patients who underwent FUS for ventralis intermedius (VIM) nucleus thalamotomy. In all, 30 consecutive patients were enrolled. 18 with essential tremor (ET), 11 with tremor-dominant Parkinson’s disease (TDPD), and 1 with Holmes tremor. Multivariate regression analysis showed that decline in heating efficiency was associated with lower skull density ratio (SDR) and a greater subtotal rise in temperature until the previous sonication. To maximize heating efficiency, the temperature increase should be set to the least value in the target alignment and verification phases, and subsequently should be increased sufficiently in the treatment phase. This strategy may be particularly beneficial in cases where high ablation temperatures cannot be achieved because of patient-related characteristics. Importantly, a broad patient population would benefit from this strategy as it could reduce the need for high energy to achieve therapeutic temperatures, thereby decreasing the risks of adverse events.
机译:经颅磁共振引导的聚焦超声(FUS)治疗是震颤和其他运动障碍的侵入性立体定向治疗较小。目标脑组织中足够高的温度在消融程序中至关重要,以获得良好的结果。因此,在由于患者相关的特性不能实现高温的情况下,最大化加热效率是至关重要的。然而,尚未建立实现具有FUS的策略。本研究旨在调查与FUS中加热效率相关的程序因素。我们回顾性地审查并分析了患有腹膜核(Vim)核肌瘤的Fus的患者的数据。总而言之,连续30名患者注册。 18具有必要的震颤(et),11,具有震颤的帕金森病(TDPD)和1个带有福尔摩斯震颤的1个。多变量回归分析表明,加热效率下降与较低的颅骨密度比(SDR)有关,并且在先前超声的温度下更大的小计。为了使加热效率最大化,应将温度升高设定为目标取向和验证相的最小值,随后应在治疗阶段充分增加。由于患者相关特征不能实现高消融温度的情况,该策略可能特别有益。重要的是,宽阔的患者人口将从这种策略中受益,因为它可以减少对高能量来实现治疗温度的需求,从而降低不良事件的风险。

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