School of Electronic and Information Engineering, South China University of Technology, Guangzhou, China.
College of Information Engineering, Shenzhen University, Shenzhen 518060, China.
Biomed Res Int. 2017;2017:6027029. doi: 10.1155/2017/6027029. Epub 2017 Mar 26.
Real-time three-dimensional (3D) ultrasound (US) has attracted much more attention in medical researches because it provides interactive feedback to help clinicians acquire high-quality images as well as timely spatial information of the scanned area and hence is necessary in intraoperative ultrasound examinations. Plenty of publications have been declared to complete the real-time or near real-time visualization of 3D ultrasound using volumetric probes or the routinely used two-dimensional (2D) probes. So far, a review on how to design an interactive system with appropriate processing algorithms remains missing, resulting in the lack of systematic understanding of the relevant technology. In this article, previous and the latest work on designing a real-time or near real-time 3D ultrasound imaging system are reviewed. Specifically, the data acquisition techniques, reconstruction algorithms, volume rendering methods, and clinical applications are presented. Moreover, the advantages and disadvantages of state-of-the-art approaches are discussed in detail.
实时三维(3D)超声(US)在医学研究中受到了更多的关注,因为它提供了交互反馈,帮助临床医生获得高质量的图像以及扫描区域的及时空间信息,因此在术中超声检查中是必要的。已经有大量的出版物声称可以使用容积探头或常规使用的二维(2D)探头完成 3D 超声的实时或近实时可视化。到目前为止,关于如何设计具有适当处理算法的交互式系统的综述仍然缺失,导致人们对相关技术缺乏系统的理解。本文回顾了设计实时或近实时 3D 超声成像系统的以往和最新工作。具体来说,介绍了数据采集技术、重建算法、体绘制方法和临床应用。此外,还详细讨论了最新方法的优缺点。