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Characterization of changes in therapeutic ultrasound transducer performance over time using the angular spectrum method

机译:使用角谱方法表征治疗性超声换能器性能随时间的变化

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Strongly focused large aperture transducers used in high-intensity focused ultrasound treatments are prone to manufacturing defects and degradation. Current methods for evaluating transducer quality measure only bulk physical changes of transducers. We have determined the pressure distribution at the transducer surface, using the angular spectrum method, to detect defects of the transducer. Three therapeutic transducers were investigated. The pressure distribution at the focal plane of each transducer was measured and input into a back-projection algorithm to calculate the pressure distribution at the transducer surface. A number of scan window sizes were used for the pressure distribution measurement at the focal plane to determine the effect on the resolution of the calculated pressure distribution at the transducer surface. Results showed that one transducer might have suffered manufacturing defects. The second transducer degraded over 1 year of use with one half of the transducer suffering a partial loss of efficiency. The third transducer remained unchanged over 1 year. The scan window of 40 mm times 40 mm at the focal plane was required to identify defects 6 mm in diameter on the transducer surface. The results demonstrate that the angular spectrum method could be a useful tool for evaluating transducer quality
机译:在高强度聚焦超声治疗中使用的强聚焦大孔径换能器易于制造缺陷和退化。用于评估换能器质量的当前方法仅测量换能器的整体物理变化。我们已经使用角谱方法确定了换能器表面的压力分布,以检测换能器的缺陷。研究了三种治疗传感器。测量每个换能器焦平面处的压力分布,并将其输入到反投影算法中,以计算换能器表面的压力分布。许多扫描窗口大小用于焦平面处的压力分布测量,以确定对换能器表面计算的压力分布的分辨率的影响。结果表明,一个换能器可能遭受了制造缺陷。第二个换能器在使用一年后退化,一半换能器效率下降。第三个换能器在一年内保持不变。需要使用焦平面上40 mm乘40 mm的扫描窗口来识别换能器表面直径6 mm的缺陷。结果表明,角谱方法可能是评估换能器质量的有用工具

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