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Ultrasound field measuring using hydrophone for quantitative evaluation of medical ultrasonic probe

机译:使用水听力测量超声波场测量医学超声探头的定量评估

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The quality of ultrasonic images is crucially affected by the applied ultrasonic probe; thus, it is necessary to evaluate the ultrasonic probe to achieve optimal performance. In this paper, the 3D acoustic field analysis method using a hydrophone, one of the probe evaluation methods, was performed, and the efficacy of this evaluation method for quantitative evaluation was evaluated. To acquire the acoustic field distribution of ultrasound at 7.5 MHz, a 128-multi-element medical ultrasonic array probe, that is considered to be inferior, was attached to a shaft. The shaft could be controlled in the x, y, and z directions. The hydrophone was attached in a water bath. The acoustic field distribution of each channel was displayed, and some parameters such as maximum acoustic pressure, the volume of -3dB field, and the symmetry of acoustic field were calculated. Using these parameters, the acoustic fields of normal, abnormal and simulated channels were compared. Comparing acoustic field characteristics of each channel proves that the proposed 3D acoustic field parameters are reliable and efficient to assess the performance of the ultrasonic probe.
机译:超声图像的质量至关重要的超声波探头;因此,有必要评估超声波探头以实现最佳性能。本文采用了使用水听器的3D声场分析方法,进行了一种探针评估方法之一,并评估了该评价方法对定量评价的功效。为了在7.5MHz下获取超声波的声场分布,将被认为是较差的128多元素医用超声阵列探针连接到轴上。轴可以控制在x,y和z方向上。水浴中的水壶连接在水浴中。显示每个通道的声场分布,并且计算了一些参数,例如最大声压,-3dB字段的体积和声场的对称性。使用这些参数,比较了正常,异常和模拟通道的声场。比较每个信道的声场特性证明,评估超声波探头的性能是可靠且有效的所提出的3D声场参数。

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