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使用三维探头的徒手超声弹性成像

Freehand ultrasound elastography with a 3-D probe.

作者信息

Treece Graham M, Lindop Joel E, Gee Andrew H, Prager Richard W

机构信息

Department of Engineering, University of Cambridge, UK.

出版信息

Ultrasound Med Biol. 2008 Mar;34(3):463-74. doi: 10.1016/j.ultrasmedbio.2007.08.014. Epub 2007 Nov 12.

Abstract

This paper presents the first near-real-time freehand ultrasound elastography system using a (3-D) mechanical probe. Acquisition is complete within two sec, and only an additional 20 sec are required for generation of a full 3-D strain volume. The strain is axial, with estimates of lateral and elevational tissue movement used to increase the accuracy of the axial strain measurement. This is the first time all system components have been extended to 3-D, i.e., 3-D windows are used to track displacement, which is tracked in all directions, and 3-D kernels are used for least-squares gradient estimates. Normalization of the freehand 3-D strain data is also applied across the whole volume. The system is tested using a novel research 3-D radiofrequency (RF) system with real-time control over the stepper motor driving the ultrasound probe, and real-time streaming of RF ultrasound data. The paper proves the concept, rather than making significant comments on the achievable accuracy in 3-D, although we demonstrate that the high performance of the 2-D techniques that we extend appears to carry through to in-vitro and in-vivo 3-D data. The result is a fast and high-resolution 3-D image of normalized axial strain. (E-mail: gmt11@eng.cam.ac.uk).

摘要

本文介绍了首个使用(三维)机械探头的近实时徒手超声弹性成像系统。采集在两秒内完成,生成完整的三维应变容积仅需额外20秒。应变是轴向的,利用横向和仰角组织运动估计值来提高轴向应变测量的准确性。这是首次将所有系统组件扩展到三维,即使用三维窗口跟踪位移,位移在所有方向上被跟踪,并且使用三维内核进行最小二乘梯度估计。徒手三维应变数据的归一化也应用于整个容积。该系统使用一种新型研究性三维射频(RF)系统进行测试,该系统可对驱动超声探头的步进电机进行实时控制,并实现RF超声数据的实时流传输。本文证明了该概念,而非对三维可实现精度进行重大评论,尽管我们证明了我们扩展的二维技术的高性能似乎延续到了体外和体内三维数据中。结果是得到了归一化轴向应变的快速高分辨率三维图像。(电子邮件:gmt11@eng.cam.ac.uk

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