Gao L, Parker K J, Lerner R M, Levinson S F
Department of Electrical Engineering, University of Rochester, NY 14627, USA.
Ultrasound Med Biol. 1996;22(8):959-77. doi: 10.1016/s0301-5629(96)00120-2.
Recently, a number of methods have been developed that make it possible to image the elastic properties of soft tissues. Because certain types of tissues such as malignant lesions, for example, have elastic properties that are markedly different from surrounding tissues, elasticity imaging could provide a significant adjunct to current diagnostic ultrasonic methods. Further, elasticity imaging techniques could be used to augment the study of tissues that change their elastic properties, such as skeletal and cardiac muscle. In this paper, we survey some of the previous work done in the related field of biomechanics, and we review measurement techniques from the 1950s to the 1980s. Different approaches to elastic imaging and signal processing are then discussed and a lexicography for elastic imaging is introduced. It is hoped that this nomenclature will provide a meaningful categorization of various approaches and will make evident the inherent parameters displayed and conditions applied in deriving the resulting images. Key assumptions and signal processing approaches are also reviewed. Finally, directions for future work are suggested.
最近,已经开发出了一些方法,使得对软组织的弹性特性进行成像成为可能。因为某些类型的组织,例如恶性病变,具有与周围组织明显不同的弹性特性,弹性成像可以为当前的诊断超声方法提供重要的辅助。此外,弹性成像技术可用于加强对改变其弹性特性的组织的研究,如骨骼肌和心肌。在本文中,我们综述了在生物力学相关领域以前所做的一些工作,并回顾了20世纪50年代到80年代的测量技术。然后讨论了弹性成像和信号处理的不同方法,并引入了弹性成像的术语。希望这个命名法能为各种方法提供有意义的分类,并使所显示的固有参数和在推导所得图像时应用的条件变得明显。还综述了关键假设和信号处理方法。最后,提出了未来工作的方向。