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Photoacoustic thermometry for therapeutic hyperthermia

机译:光声测温法用于治疗体温过高

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Local hyperthermia is widely studied as a treatment option for small tumors. This study investigates the feasibility of exploiting the photoacoustic (PA) effect to monitor the in situ temperature rise during high-intensity focused ultrasound (HIFU) exposures for therapeutic hyperthermia. Polyacrylamide phantoms with a cylindrical inclusion (3 × 20 mm) of graphite (0.01 g/ml) were heated using 30 s exposures from a 2 MHz HIFU transducer. The transducer focus was aligned to the tip of a wire thermocouple embedded in the inclusion. A 532 nm pulsed laser was used to illuminate the inclusion. A 15 MHz broadband transducer was employed as a passive receiver (PR) to detect the PA response, which was an ultrasonic pulse emanating from the inclusion due to thermoelastic expansion induced by optical absorption. The native temperature and PR signals were recorded before, during, and after HIFU exposure. Singular-value decomposition (SVD) was performed on the matrix consisting of the PR signals to extract temperature data. SVD-deduced, PA-based temperatures correlated well with the thermocouple measurements (RMS error<5°C). A temperature rise of 20°C corresponded to a 30% increase in PA amplitude. The PA temperature-measurement technique was able to track heating and cooling phases over a range of temperatures characteristic of HIFU-induced hyperthermia.
机译:局部热疗已被广泛研究为小肿瘤的治疗选择。这项研究调查了利用光声(PA)效应监测高强度聚焦超声(HIFU)暴露期间治疗体温过高的原位温度升高的可行性。使用从2 MHz HIFU换能器曝光30 s,加热了一个圆柱形夹杂物(3×20 mm)的石墨(0.01 g / ml)聚丙烯酰胺幻象。换能器焦点对准嵌入在夹杂物中的导线热电偶的尖端。 532 nm脉冲激光用于照亮夹杂物。 15 MHz宽带换能器用作无源接收器(PR),以检测PA响应,该PA响应是由于光学吸收引起的热弹性膨胀而从包含物中发出的超声波脉冲。在HIFU暴露之前,之中和之后记录本机温度和PR信号。对由PR信号组成的矩阵执行奇异值分解(SVD),以提取温度数据。 SVD推断,基于PA的温度与热电偶测量值(RMS误差<5×°C)很好地相关。 20°C的温度上升对应于PA振幅增加30%。 PA温度测量技术能够跟踪HIFU引起的体温过高的温度范围内的加热和冷却阶段。

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