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A comparison of light spot hydrophone and fiber optic probe hydrophone for lithotripter field characterization

机译:光斑水听器与光纤探针水听器在碎石场表征中的比较

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The performance of a newly developed light spot hydrophone (LSHD) in lithotripter field characterization was compared to that of the fiber optic probe hydrophone (FOPH). Pressure waveforms produced by a stable electromagnetic shock wave source were measured by the LSHD and FOPH under identical experimental conditions. In the low energy regime, focus and field acoustic parameters matched well between the two hydrophones. At clinically relevant high energy settings for shock wave lithotripsy, the measured leading compressive pressure waveforms matched closely with each other. However, the LSHD recorded slightly larger |P–| (p < 0.05) and secondary peak compressive pressures (p < 0.01) than the FOPH, leading to about 20% increase in total acoustic pulse energy calculated in a 6 mm radius around the focus (p = 0.06). Tensile pulse durations deviated ∼5% (p < 0.01) due to tensile wave shortening from cavitation activity using the LSHD. Intermittent compression spikes and laser light reflection artifacts have been correlated to bubble activity based on simultaneous high-speed imaging analysis. Altogether, both hydrophones are adequate for lithotripter field characterization as specified by the international standard IEC 61846.
机译:将新开发的光斑水听器(LSHD)在碎石机现场表征中的性能与光纤探针水听器(FOPH)的性能进行了比较。 LSHD和FOPH在相同的实验条件下测量了稳定的电磁冲击波源产生的压力波形。在低能量状态下,两个水听器之间的聚焦和场声参数非常匹配。在临床相关的冲击波碎石术高能量设置下,测得的超前压缩压力波形彼此紧密匹配。但是,LSHD记录的| P– |稍大。 (p <0.05)和次级峰值压缩压力(p <0.01)高于FOPH,从而导致在焦点周围6 mm半径处计算出的总声脉冲能量增加了约20%(p = 0.06)。由于使用LSHD的空化活动缩短了拉伸波,因此拉伸脉冲的持续时间偏离了约5%(p <0.01)。基于同步高速成像分析,间歇性压缩尖峰和激光反射伪影已与气泡活动相关联。总的来说,两个水听器都足以满足国际标准IEC 61846规定的碎石场表征。

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