论文标题
微调H扫描以可视化组织散射器的类型
Fine-tuning the H-scan for visualizing types of tissue scatterers
论文作者
论文摘要
H-SCAN方法是一种匹配的过滤器方法,旨在将信息添加到传统的超声B扫描中。该理论基于不同类别的反射器或散点子产生的回声的差异。可以为不同类型的散点器创建匹配的过滤器,从而最大值表示匹配和配色方案可用于指示负责回声的散点器类别,从而提供了对结果的可视化解释。但是,在各种形状的弱散射理论中,不均匀对象的大小的小变化将在散射传递函数中产生变化。在本文中,我们确定了中心频率的变化,以及回声的时间和频域特征,并主张一般权力定律传输函数以捕获散射类型的主要特征。通过这种一般方法,可以将H扫描匹配的过滤器设置为引起散射类型的更细粒度的变化,与组织形态的更细微变化相称。依赖频率衰减的补偿有助于避免横梁软化效果,深度增加。提供了幻影以及正常和病理组织的示例,以证明H扫描分析和显示对散射器的大小和形态敏感,并且可以适应常规成像系统。
The H-scan approach is a matched filter methodology that aims to add information to the traditional ultrasound B-scan. The theory is based on the differences in the echoes produced by different classes of reflectors or scatterers. Matched filters can be created for different types of scatterers, whereby the maximum output indicates a match and color schemes can be used to indicate the class of scatterer responsible for echoes, providing a visual interpretation of the results. However, within the theory of weak scattering from a variety of shapes, small changes in the size of the inhomogeneous objects will create shifts in the scattering transfer function. In this paper, we determine the shift in center frequency, along with time and frequency domain characteristics of echoes and argue for a general power law transfer function to capture the major characteristics of scattering types. With this general approach, the H-scan matched filters can be set to elicit more fine grain shifts in scattering types, commensurate with more subtle changes in tissue morphology. Compensation for frequency dependent attenuation is helpful for avoiding beam softening effects with increasing depths. Examples from phantoms and normal and pathological tissues are provided to demonstrate that the H-scan analysis and displays are sensitive to scatterer size and morphology, and can be adapted to conventional imaging systems.