首页> 外文期刊>Neuromodulation: journal of the International Neuromodulation Society >Low-Intensity Focused Ultrasound Pulsation Device Used During Magnetic Resonance Imaging: Evaluation of Magnetic Resonance Imaging-Related Heating at 3 Tesla/128 MHz
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Low-Intensity Focused Ultrasound Pulsation Device Used During Magnetic Resonance Imaging: Evaluation of Magnetic Resonance Imaging-Related Heating at 3 Tesla/128 MHz

机译:磁共振成像期间使用的低强度聚焦超声脉动设备:评估与磁共振成像相关的3 Tesla / 128 MHz加热

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Objective: The objective of this study was to determine magnetic resonance imaging (MRI)-related heating for a low-intensity focused ultrasound pulsation (LIFUP) device used during MRI performed at 3 T/128 MHz. Materials and Methods: A special phantom was constructed to mimic the thermal properties of the human brain, and a piece of human temporal bone (skull) was embedded on top. Four fluoroptic thermometry probes, placed above and below the skull, were used to measure temperature changes during MRI (3 T/128 MHz; scanner-reported head average specific absorption rate 1.1 -2 W/ kg) with and without concurrent LIFUP sonication. LIFUP sonication was applied using a focused ultrasound device (BXPulsar 1001, Brainsonix, Inc., Los Angeles, CA, USA) at a derated spatial-peak temporal-average intensity of 3870 mW/cm~2. Results: MRI performed at relatively high specific absorption rate (SAR) caused a slight elevation in temperature (<0.6°C). Concurrent use of MRI at a medium-strength SAR and LIFUP sonication resulted in maximum temperature rise of 3.1 °C after 8 min of continuous use. Conclusions: Under the specific conditions utilized for this investigation, LIFUP sonication does not appear to present significant heating risks when used concurrently with MRI. This information has important implications for the use of the LIFUP sonication in human subjects undergoing MRI at 3 T/128 MHz.
机译:目的:本研究的目的是确定在3 T / 128 MHz的MRI期间使用的低强度聚焦超声脉动(LIFUP)装置的磁共振成像(MRI)相关加热。材料和方法:构造了一个特殊的人体模型来模仿人脑的热学特性,并在其顶部嵌入了一块人类颞骨(头骨)。在颅骨上方和下方放置了四个荧光测温探针,用于测量MRI期间(3 T / 128 MHz;扫描仪报告的头部平均比吸收率1.1 -2 W / kg)在有和没有同时进行LIFUP超声处理时的温度变化。使用聚焦超声设备(BXPulsar 1001,Brainsonix,Inc。,洛杉矶,CA,美国)以降低的空间峰值时间平均强度3870mW / cm〜2施加LIFUP超声。结果:以相对较高的比吸收率(SAR)进行的MRI导致温度略有升高(<0.6°C)。连续使用8分钟后,在中等强度SAR和LIFUP超声下同时使用MRI导致最大温度升高3.1°C。结论:在用于这项研究的特定条件下,与MRI并用时,LIFUP超声处理似乎没有显着的发热危险。该信息对于在3 T / 128 MHz进行MRI的人类受试者中使用LIFUP超声具有重要意义。

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