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Noninvasive thermometry assisted by a dual-function ultrasound transducer for mild hyperthermia

机译:双功能超声换能器辅助无创测温,治疗轻度体温过高

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Mild hyperthermia is increasingly important for the activation of temperature-sensitive drug delivery vehicles. Noninvasive ultrasound thermometry based on a 2-D speckle tracking algorithm was examined in this study. Here, a commercial ultrasound scanner, a customized co-linear array transducer, and a controlling PC system were used to generate mild hyperthermia. Because the co-linear array transducer is capable of both therapy and imaging at widely separated frequencies, RF image frames were acquired during therapeutic insonation and then exported for off-line analysis. For in vivo studies in a mouse model, before temperature estimation, motion correction was applied between a reference RF frame and subsequent RF frames. Both in vitro and in vivo experiments were examined; in the in vitro and in vivo studies, the average temperature error had a standard deviation of 0.7u000b0;C and 0.8u000b0;C, respectively. The application of motion correction improved the accuracy of temperature estimation, where the error range was ߝ1.9 to 4.5u000b0;C without correction compared with ߝ1.1 to 1.0u000b0;C following correction. This study demonstrates the feasibility of combining therapy and monitoring using a commercial system. In the future, real-time temperature estimation will be incorporated into this system.
机译:轻度高温对于激活对温度敏感的药物传递载体越来越重要。本研究研究了基于二维散斑跟踪算法的无创超声测温法。在这里,使用商用超声波扫描仪,定制的共线阵列换能器和控制PC系统生成温和的高温。由于共线阵列换能器能够在很宽的频率下进行治疗和成像,因此在治疗声波过程中会采集RF图像帧,然后将其导出以进行离线分析。为了在小鼠模型中进行体内研究,在温度估算之前,在参考RF帧和后续RF帧之间应用运动校正。进行了体外和体内实验。在体外和体内研究中,平均温度误差的标准偏差分别为0.7u000b0; C和0.8u000b0; C。运动校正的应用提高了温度估算的准确性,未经校正的误差范围为ߝ1.9至4.5u000b0; C,而校正后的误差范围为ߝ1.1至1.0u000b0; C。这项研究证明了使用商业系统将治疗和监测相结合的可行性。将来,实时温度估算将被纳入该系统。

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