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Development of an Ultrasonic Nonlinear Frequency Compounding Method for Use in Noninvasive Tissue Thermometry

机译:超声非线性频率复合方法在无创组织体温测量中的应用

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In order for a prescribed thermal dose to be delivered accurately during thermotherapy, the availability of a reliable and robust thermometry technique is of the utmost importance. To this end, an ultrasound based nonlinear single frequency method (NLSF) was originally proposed by our group, based on the temperature sensitive change in acoustic harmonics backscattered energy. The NLSF, however, suffers from limitations in that it produced high standard deviation and low signal-to-noise ratio (SNR) when performing temperature calibrations was applied to tissue thermometry. In this work a novel nonlinear frequency compounding (NLFC) method is introduced, which utilizes the advantages of frequency compounding to improve SNR. All NLFC input parameters were optimized to maximize SNR of both B-mode and backscattered energy images in a tissue mimicking phantom. The NLFC method was then used to produce 2D temperature maps for heating and cooling of ex vivo porcine tissue samples with a focused ultrasound transducer. The new NLFC method was able to produce superior temperature maps over the previously developed NLSF with percent improvements of up to 64.1%.
机译:为了在热疗期间准确地传递规定的热剂量,可靠和强大的测温技术的可用性至关重要。为此,我们的团队最初基于声谐波反向散射能量的温度敏感变化,提出了一种基于超声的非线性单频方法(NLSF)。但是,NLSF的局限性在于,当将温度校准应用于组织体温计时,它会产生高标准偏差和低信噪比(SNR)。在这项工作中,介绍了一种新颖的非线性频率复合(NLFC)方法,该方法利用了频率复合的优点来改善SNR。优化了所有NLFC输入参数,以最大化模拟体模的组织中B模式和背向散射能量图像的SNR。然后使用NLFC方法生成2D温度图以加热和冷却 离体 聚焦超声换能器采集猪组织样本。与以前开发的NLSF相比,新的NLFC方法能够产生更佳的温度图,并且提高了多达64.1%的百分比。

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