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Synthetic aperture focusing for medical endoscopic ultrasonography

机译:用于医学内窥镜超声检查的合成孔径聚焦

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摘要

A new approach for synthetic aperture focusing (SAF) to enhance both signal to noise ratio (SNR) and resolution in endoscopic ultrasonography is presented in this paper. The technique uses the rotation feature of single element transducer probe, and transmits and receives the echoes at different time and locations during the rotary scanning. Based on theoretical simulation, axial and lateral matched-filters are developed according to the coded and linear frequency modulated characteristics of the echoes to implement axial and lateral compression. The effects of SNR and resolution enhancements by the new SAF approach are demonstrated by both Field II simulation and sample experiment. Data for 6 point targets are simulated and the performance of SAF is compared with those from conventional imaging method and Delay-and-Sum (DS) method. Pigskin samples are examined by a single element transducer at 8 MHz. The effects of sound speed errors and rotary scanning speed errors on both SNR and resolution are calculated to show the robustness of SAF algorithm. Both simulation and experimental results indicated that new SAF can improve SNR and resolution of ultrasound images by 9.38 dB and 51% respectively as compared with the conventional method. It therefore has potential for future clinical and research applications.
机译:本文提出了一种新的合成孔径聚焦(SAF)方法,以提高内窥镜超声检查的信噪比(SNR)和分辨率。该技术使用单元素换能器探头的旋转功能,并在旋转扫描期间的不同时间和位置发送和接收回波。在理论模拟的基础上,根据回波的编码和线性调频特性,开发了轴向和横向匹配滤波器,以实现轴向和横向压缩。通过Field II仿真和样本实验都证明了新SAF方法带来的SNR和分辨率增强效果。模拟了6个点目标的数据,并将SAF的性能与常规成像方法和时延和(DS)方法的性能进行了比较。猪皮样品由单元素换能器在8 MHz下检查。计算了声速误差和旋转扫描速度误差对SNR和分辨率的影响,以显示SAF算法的鲁棒性。仿真和实验结果均表明,与传统方法相比,新的SAF可以将超声图像的SNR和分辨率分别提高9.38 dB和51%。因此,它具有未来临床和研究应用的潜力。

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