Noninvasive Deep-Tissue Temperature Monitoring Based on Magnetic Mediated Thermoacoustics

Siyu Liu
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Abstract

Noninvasive acquisition of deep tissue temperature has important applications in home health monitoring, hyperthermia safety control, and other domains. In this work, we present here a novel magnetically mediated thermoacoustic temperature measurement method. Utilizing coil to stimulate amplitude modulated magnetic field and ultrasound transducer to receive the generated thermoacoustic wave from the inserted magnetic nanoparticles. Benefiting from the high sensitivity of thermoacoustic emission from nanoparticles and the deep penetration capability of both magnetic field and ultrasound propagation, the proposed thermoacoustic temperature measurement system enables a high measurement accuracy of 0.5 degrees Celsius in real time. This work potentially facilitates further development of closed loop magnetic hyperthermia for practical clinical applications.
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基于磁介导热声学的无创深部组织温度监测
深层组织温度的无创采集在家庭健康监测、热疗安全控制等领域有着重要的应用。在这项工作中,我们提出了一种新的磁介导热声测温方法。利用线圈激发调幅磁场,利用超声换能器接收插入的磁性纳米颗粒产生的热声波。利用纳米颗粒热声发射的高灵敏度以及磁场和超声波传播的深度穿透能力,所提出的热声测温系统可以实现0.5摄氏度的实时测量精度。这项工作有可能促进闭环磁热疗在实际临床应用中的进一步发展。
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