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A dual frequency ultrasonic probe for medical applications

机译:用于医疗应用的双频超声探头

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A dual frequency probe using a multilayer ceramic is proposed for simultaneously obtaining a high resolution B mode and a high sensitivity Doppler mode image. This ceramic consists of two layers in which the poling directions are opposite and the individual thicknesses are different. It is possible to control the values of relative electromechanical coupling factors in the fundamental and the second harmonic by changing the thickness ratio. A thickness ratio of 1:0.7 was decided from computer simulation based on the Mason's model. A sufficient resolution has been shown from the fact that the intima of the carotid artery could be distinguished by an actually fabricated probe with dual frequencies of 3.75 and 7.5 MHz. Also, the sensitivity of this probe in the Doppler mode at 5 cm depth from the surface has been improved as much as 5 dB over that of a conventional one.
机译:为了同时获得高分辨率的B模式和高灵敏度的多普勒模式图像,提出了使用多层陶瓷的双频探头。这种陶瓷由两层组成,其中极化方向相反,各个厚度不同。通过改变厚度比,可以控制基波和二次谐波中的相对机电耦合系数的值。根据梅森模型,通过计算机模拟确定厚度比为1:0.7。从以下事实已经显示出足够的分辨率,即可以通过实际制造的具有3.75和7.5 MHz双频的探头来区分颈动脉内膜。而且,该探头在距表面5 cm深度的多普勒模式下的灵敏度已比传统探头提高了5 dB。

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