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首页> 外文期刊>The Journal of the Acoustical Society of America >Acoustic field characterization of the Duolith: Measurements and modeling of a clinical shock wave therapy device
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Acoustic field characterization of the Duolith: Measurements and modeling of a clinical shock wave therapy device

机译:Duolith的声场表征:临床冲击波治疗仪的测量和建模

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摘要

Extracorporeal shock wave therapy (ESWT) uses acoustic pulses to treat certain musculoskeletal disorders. In this paper the acoustic field of a clinical portable ESWT device (Duolith SD1) was characterized. Field mapping was performed in water for two different standoffs of the electromagnetic head (15 or 30 mm) using a fiber optic probe hydrophone. Peak positive pressures at the focus ranged from 2 to 45 MPa, while peak negative pressures ranged from -2 to -11 MPa. Pulse rise times ranged from 8 to 500 ns; shock formation did not occur for any machine settings. The maximum standard deviation in peak pressure at the focus was 1.2%, indicating that the Duolith SD1 generates stable pulses. The results compare qualitatively, but not quantitatively with manufacturer specifications. Simulations were carried out for the short standoff by matching a Khokhlov-Zabolotskaya-Kuznetzov equation to the measured field at a plane near the source, and then propagating the wave outward. The results of modeling agree well with experimental data. The model was used to analyze the spatial structure of the peak pressures. Predictions from the model suggest that a true shock wave could be obtained in water if the initial pressure output of the device were doubled.
机译:体外冲击波疗法(ESWT)使用声脉冲来治疗某些肌肉骨骼疾病。本文对临床便携式ESWT设备(Duolith SD1)的声场进行了表征。使用光纤探针水听器在水中对电磁头的两个不同的支座(15或30 mm)执行场映射。焦点处的峰值正压范围为2至45 MPa,而峰值负压范围为-2至-11 MPa。脉冲上升时间为8到500 ns;任何机器设置都不会形成冲击。焦点处的峰值压力的最大标准偏差为1.2%,表明Duolith SD1生成稳定的脉冲。结果与制造商的说明进行了定性比较,但没有进行定量比较。通过将Khokhlov-Zabolotskaya-Kuznetzov方程与源附近平面上的实测场相匹配,然后向外传播波,对短距离僵持进行了仿真。建模结果与实验数据吻合良好。该模型用于分析峰值压力的空间结构。该模型的预测表明,如果设备的初始压力输出加倍,则可以在水中获得真正的冲击波。

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