Acoustic characterization of high intensity focused ultrasound fields: A combined measurement and modeling approach

水听器 高强度聚焦超声 波形 声学 传感器 材料科学 成像体模 振幅 光学 强度(物理) 非线性系统 超声波 非线性声学 表征(材料科学) 带宽(计算) 超声波传感器 物理 工程类 电气工程 电信 量子力学 电压
作者
Michael Canney,Michael R. Bailey,Lawrence A. Crum,Vera A. Khokhlova,Oleg A. Sapozhnikov
出处
期刊:Journal of the Acoustical Society of America [Acoustical Society of America]
卷期号:124 (4): 2406-2420 被引量:290
标识
DOI:10.1121/1.2967836
摘要

Acoustic characterization of high intensity focused ultrasound (HIFU) fields is important both for the accurate prediction of ultrasound induced bioeffects in tissues and for the development of regulatory standards for clinical HIFU devices. In this paper, a method to determine HIFU field parameters at and around the focus is proposed. Nonlinear pressure waveforms were measured and modeled in water and in a tissue-mimicking gel phantom for a 2 MHz transducer with an aperture and focal length of 4.4 cm. Measurements were performed with a fiber optic probe hydrophone at intensity levels up to 24,000 W/cm(2). The inputs to a Khokhlov-Zabolotskaya-Kuznetsov-type numerical model were determined based on experimental low amplitude beam plots. Strongly asymmetric waveforms with peak positive pressures up to 80 MPa and peak negative pressures up to 15 MPa were obtained both numerically and experimentally. Numerical simulations and experimental measurements agreed well; however, when steep shocks were present in the waveform at focal intensity levels higher than 6000 W/cm(2), lower values of the peak positive pressure were observed in the measured waveforms. This underrepresentation was attributed mainly to the limited hydrophone bandwidth of 100 MHz. It is shown that a combination of measurements and modeling is necessary to enable accurate characterization of HIFU fields.
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