Chen Shujie, Parker Kevin J
University of Rochester , Department of Electrical and Computer Engineering, Hopeman Engineering Building 203, P.O. Box 270126, Rochester, New York 14627-0126, United States.
J Med Imaging (Bellingham). 2016 Apr;3(2):027003. doi: 10.1117/1.JMI.3.2.027003. Epub 2016 Jun 22.
Many pulse-echo imaging systems use focused beams to improve lateral resolution. The beam width is determined by the choice of source and apodization function, the frequency, and the physics of focusing. Postprocessing strategies to improve lateral resolution can be limited by the need for conditioning the mathematics of inverse filtering, due to instabilities. We present an analysis that defines key constraints on sampled versions of lateral beampatterns. Within these constraints are useful symmetric beampatterns, which, when properly sampled, can have a stable inverse filter. A framework for analysis and processing is described and applied to phantoms and tissues to demonstrate the improvements that can be realized.
许多脉冲回波成像系统使用聚焦波束来提高横向分辨率。波束宽度由源和变迹函数的选择、频率以及聚焦物理特性决定。由于不稳定性,用于改善横向分辨率的后处理策略可能会受到逆滤波数学条件限制。我们提出一种分析方法,该方法定义了横向波束模式采样版本的关键约束条件。在这些约束条件下存在有用的对称波束模式,当对其进行适当采样时,可拥有稳定的逆滤波器。本文描述了一种分析和处理框架,并将其应用于体模和组织,以证明可实现的改进效果。