首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Theoretically Estimating the Acoustic Intensity of High-Intensity Focused Ultrasound (HIFU) Using Infrared Thermography
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Theoretically Estimating the Acoustic Intensity of High-Intensity Focused Ultrasound (HIFU) Using Infrared Thermography

机译:理论上使用红外热成像估算高强度聚焦超声(HIFU)的声学强度

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High-intensity focused ultrasound (HIFU) has been used successfully in clinics for the treatment of a variety of cancerous and benign tumors. Characterization of the focused acoustic field is of importance in the planning of the ablation procedure and further development of HIFU technology. Quantitative estimation of acoustic intensity is feasible using the infrared (IR) thermography on an absorber. However, the current approach is limited to low power output. In this study, a theoretical model was established to describe the acoustic field and absorbed energy in the absorber with the presence of harmonics in the HIFU pressure waveform at the focus and then to calculate the temperature elevations during the HIFU heating, from which the acoustic intensities could be derived. The absolute difference between the derived and incident acoustic intensities in a 2-mm absorber at the varied acoustic power output (up to 80 W) and attenuation of the absorber (up to 346 Np/m/MHz) is <6%. In addition, the proposed approach was found to also work well for the absorber with a varied thickness because of the monotonic decrease of the temperature elevation. The effects of pulse duration and duty cycle of pulsed HIFU ablation on the estimation accuracy were also investigated. It is found that the estimation accuracy is good for short pulse duration using the equivalent acoustic intensity. Overall, the proposed approach could estimate the acoustic intensity and harmonic distribution of HIFU at the high power output using IR thermography for a large parametric range of absorber and HIFU output in the numerical investigation.
机译:高强度聚焦超声(HIFU)已成功用于诊所用于治疗各种癌症和良性肿瘤。聚焦声场的表征在烧蚀程序的规划和HIFU技术的进一步发展方面具有重要性。声学强度的定量估计是使用吸收器上的红外(IR)热成像的可行性。然而,目前的方法限于低功率输出。在这项研究中,建立了理论模型,以描述吸收器中的声场和吸收能量,在焦点处的HIFU压力波形中的谐波存在,然后在HIFU加热期间计算温度升高,从该升高到声强度可以得出。在变化的声功率输出(最多80倍)处的2mm吸收器中的导出和入射声强度之间的绝对差异和吸收器的衰减(高达346np / m / mHz)<6%。此外,由于温度升高的单调减少,发现所提出的方法也适用于具有多种厚度的吸收器。还研究了脉冲持续时间和占空比对估计精度的脉冲持续时间和占空比的影响。发现估计精度适用于使用等效声强度的短脉冲持续时间。总的来说,所提出的方法可以在数值调查中估算使用IR热成像的高功率输出处的HIFU的声强度和谐波分布。在数值研究中,HIFU输出的大型参数范围。

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