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Barker-coded excitation in ophthalmological ultrasound imaging

机译:眼科超声成像中巴克码激发

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摘要

High-frequency ultrasound is an attractive means to obtain fine-resolution images of biological tissues for ophthalmologic imaging. To solve the tradeoff between axial resolution and detection depth, existing in the conventional single-pulse excitation, this study develops a new method which uses 13-bit Barker-coded excitation and a mismatched filter for high-frequency ophthalmologic imaging. A novel imaging platform has been designed after trying out various encoding methods. The simulation and experiment result show that the mismatched filter can achieve a much higher out signal main to side lobe which is 9.7 times of the matched one. The coded excitation method has significant advantages over the single-pulse excitation system in terms of a lower MI, a higher resolution, and a deeper detection depth, which improve the quality of ophthalmic tissue imaging. Therefore, this method has great values in scientific application and medical market.
机译:高频超声是获得用于眼科成像的生物组织的高分辨率图像的有吸引力的手段。为了解决常规单脉冲激发中存在的轴向分辨率和检测深度之间的折衷,本研究开发了一种新方法,该方法使用13位巴克编码激发和失配滤波器进行高频眼科成像。在尝试了各种编码方法之后,已经设计了一种新颖的成像平台。仿真和实验结果表明,失配滤波器可以实现更高的主旁瓣输出信号,是匹配信号的9.7倍。编码激励方法在较低的MI,更高的分辨率和更深的检测深度方面具有优于单脉冲激励系统的显着优势,从而提高了眼科组织成像的质量。因此,该方法在科学应用和医疗市场具有重要价值。

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