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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Experimental investigation of finite amplitude distortion-based, second harmonic pulse echo ultrasonic imaging
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Experimental investigation of finite amplitude distortion-based, second harmonic pulse echo ultrasonic imaging

机译:基于有限幅度失真的二次谐波回波超声成像实验研究

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摘要

The computational predictions for the imaging potential of the second harmonic produced by finite amplitude distortion were investigated with a simple experiment. A focused transducer containing concentric 2.5 MHz and 5.0 MHz elements was used to obtain a sequence of radio-frequency (r-f) backscattered signals using a tissue equivalent phantom. The 2.5 MHz element was used as the transmitter and the 5.0 MHz element was used as the receiver. At 0.68 cm in front of the geometric focal point of the transducer, the phantom contained a 0.6 cm diameter cylindrical volume which contained no scatterers. Each of these r-f signals was then processed to produce the corresponding fundamental (2.5 MHz-centered) and second harmonic (5.0 MHz-centered) envelopes. The contrast resolution obtained for the scatterer-free or cyst region of the envelopes was compared against the computed prediction and good agreement was obtained. The results of this experiment also suggest that the simple one-pulse scheme may be adequate for second harmonic imaging.
机译:通过一个简单的实验研究了由有限幅度失真产生的二次谐波的成像电位的计算预测。使用包含同心2.5 MHz和5.0 MHz元件的聚焦换能器,使用组织等效体模获得一系列射频(r-f)反向散射信号。 2.5 MHz元素用作发送器,而5.0 MHz元素用作接收器。在换能器的几何焦点前方0.68厘米处,体模包含一个直径为0.6厘米的圆柱体,其中没有散射体。然后,对这些r-f信号中的每一个进行处理,以产生相应的基波(以2.5 MHz为中心)和二次谐波(以5.0 MHz为中心)包络。将信封无散射区或囊肿区域获得的对比度分辨率与计算得出的预测值进行比较,并获得良好的一致性。该实验的结果还表明,简单的单脉冲方案可能足以用于二次谐波成像。

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