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MR-guided focused ultrasound with spatial and temporal temperature control for hyperthermia

机译:MR-Guided Foced超声带有空间和时间温度控制的热疗

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Magnetic Resonance (MR)-guided Focused Ultrasound (MRgFUS) is a promising non-invasive method for controlling hyperthermia and local drug delivery. In this work, we developed a system capable of controlled tissue heating using proportional-integral-derivative (PID) feedback control combined with 7T MR thermometry for temperature feedback. MR thermometry was validated by an optical temperature probe. We have measured and simulated MR estimates of transient ultrasound-induced heating in a tofu phantom and performed controlled heating studies in an in vivo Met-1 mouse tumor. MR thermometry estimates agreed with fiber optic temperature measurements within 1°C, and simulations of heating in a tofu phantom were in agreement with the MR temperature measurement. MR-Acoustic Radiation Force Imaging (ARFI) was used to detect micron-scale displacement caused by acoustic radiation for beam localization in the absence of heating. The MRgFUS system developed here demonstrates adequate spatial and thermal accuracy for image-guided hyperthermia applications in small animals.
机译:磁共振(MR)导向聚焦超声(MRGFU)是一种用于控制热疗和局部药物递送的有前途的非侵入性方法。在这项工作中,我们开发了一种能够使用比例 - 积分 - 衍生物(PID)反馈控制能够控制组织加热的系统,与7T MR温度计组合以进行温度反馈。通过光学温度探针验证MR温度。我们已经测量和模拟了豆腐幻像中的瞬态超声诱导的加热的MR估计,并在体内Met-1小鼠肿瘤中进行了控制的加热研究。 MR温度测量估计与1℃内的光纤温度测量相同,以及豆腐幻像中的加热模拟与MR温度测量一致。 MR-声学辐射力成像(ARFI)用于检测由加热的辐射定位的声辐射引起的微米级位移。在此开发的MRGFUS系统表明了小动物中的图像引导热疗应用的适当空间和热精度。

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