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Development of a novel acoustic lens based pulse echo Ultrasound Imaging system

机译:基于新型声透镜的脉冲回波超声成像系统的研制

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Acoustic lens based focusing technology where the image reconstruction is achieved through the focusing of an acoustic lens, can potentially replace time consuming and expensive electronic focusing technology for producing high resolution real time ultrasound (US) images. A novel acoustic lens focusing based pulse echo US imaging system is explored here. In the system, a Polyvinylidene fluoride (PVDF) film transducer generates plane wave which is backscattered by the object and focused by a spherical acoustic lens on to a linear array of transducers. To improve the anticipated low signal to noise ratio (SNR) of the received US signal due to the low electromechanical coupling coefficient of the PVDF film, here we explored the possibility of implementing pulse compression technique using linear frequency modulated (FM) signals or chirp signals. Comparisons among the different SNR values obtained with short pulse and after pulse compression with chirp signal show a clear improvement of the SNR for the compressed pulse. The preliminary results show that the SNR achieved for the compressed pulse depends on time bandwidth product of the input chirp and the spectrum of the US transducers. The axial resolution obtained with compressed pulse improved with increasing sweep bandwidth of input chirp signals, whereas the lateral resolution remained almost constant. This work demonstrates the feasibility of using a PVDF film transducer as an US transmitter in an acoustic lens focusing based imaging system and implementing pulse compression technique into the same setup to improve SNR of the received US signal.
机译:基于声透镜的聚焦技术,其中通过对抗声镜头的聚焦实现了图像重建,可以潜在地代替耗时和昂贵的电子聚焦技术来产生高分辨率实时超声(US)图像。在此探讨了一种新型的声学镜头专注的脉冲回波美国成像系统。在该系统中,聚偏二氟乙烯(PVDF)膜换能器产生由物体反向散射的平面波,并通过球面声透镜聚焦到换能器的线性阵列。为了改善由于PVDF薄膜的低机电耦合系数而改善所接收的US信号的预期低信号(SNR),在这里,我们探讨了使用线性频率调制(FM)信号或啁啾信号实现脉冲压缩技术的可能性。用短脉冲和啁啾信号脉冲压缩后获得的不同SNR值的比较显示了用于压缩脉冲的SNR的清晰改善。初步结果表明,压缩脉冲所达到的SNR取决于输入啁啾的时间带宽乘积和美国传感器的光谱。通过压缩脉冲获得的轴向分辨率随着输入啁啾信号的横扫带宽而得到改善,而横向分辨率几乎恒定。这项工作展示了使用PVDF膜换能器作为美国发射机在基于声镜头的成像系统中的发射机的可行性,并将脉冲压缩技术实现成相同的设置,以改善所接收的US信号的SNR。

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