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Investigation of synthetic aperture methods in ultrasound surface imaging using elementary surface types

机译:使用基本表面类型的超声表面成像中的合成孔径方法研究

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摘要

Synthetic aperture imaging methods have been employed widely in recent research in non-destructive testing (NDT), but uptake has been more limited in medical ultrasound imaging. Typically offering superior focussing power over more traditional phased array methods, these techniques have been employed in NDT applications to locate and characterise small defects within large samples, but have rarely been used to image surfaces. A desire to ultimately employ ultrasonic surface imaging for bone surface geometry measurement prior to surgical intervention motivates this research, and results are presented for initial laboratory trials of a surface reconstruction technique based on global thresholding of ultrasonic 3D point cloud data. In this study, representative geometry artefacts were imaged in the laboratory using two synthetic aperture techniques; the Total Focusing Method (TFM) and the Synthetic Aperture Focusing Technique (SAFT) employing full and narrow synthetic apertures, respectively.
机译:合成孔径成像方法已在无损检测(NDT)的最新研究中被广泛采用,但在医学超声成像中其吸收受到了更大的限制。通常,这些技术比更传统的相控阵方法具有更好的聚焦能力,这些技术已用于NDT应用中以定位和表征大型样品中的小缺陷,但很少用于成像表面。在外科手术之前最终采用超声表面成像进行骨表面几何形状测量的愿望激发了这项研究,并为基于超声3D点云数据全局阈值的表面重建技术的初步实验室试验提供了结果。在这项研究中,使用两种合成孔径技术在实验室中对代表性的几何伪像进行了成像。总聚焦方法(TFM)和合成孔径聚焦技术(SAFT)分别采用了完整的和狭窄的合成光圈。

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