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首页> 外文期刊>IEEE Transactions on Ultrasonics, Ferroelectrics, and Frequency Control >Linear approach to axial resolution in elasticity imaging
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Linear approach to axial resolution in elasticity imaging

机译:弹性成像中轴向分辨率的线性方法

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Thus far axial resolution in elasticity imaging has been addressed only empirically. No clear analytical approaches have emerged because the estimator is nonlinear in the data, correlation functions are nonstationary, and system responses vary spatially. This paper describes a linear systems approach based on a small-strain impulse approximation that results in the derivation of a local impulse response (LIR) and local modulation transfer function (LMTF). Closed-form Solutions for strain LIR are available to provide new insights on the role of instrumentation and processing on axial strain resolution. Novel phantom measurements are generated to validate results. We found that the correlation window determines axial resolution in most practical situations, but that the the same system properties that determine B-mode resolution ultimately limit elasticity imaging.
机译:到目前为止,弹性成像中的轴向分辨率仅凭经验解决。由于估计器在数据中是非线性的,相关函数是非平稳的,并且系统响应在空间上是变化的,因此尚未出现清晰的分析方法。本文介绍了一种基于小应变脉冲近似的线性系统方法,该方法可推导出局部脉冲响应(LIR)和局部调制传递函数(LMTF)。 LIR应变的封闭形式解决方案可提供有关仪器和加工在轴向应变分辨率中的作用的新见解。生成新的幻像测量结果以验证结果。我们发现,在大多数实际情况下,相关窗口确定轴向分辨率,但是确定B模式分辨率的相同系统属性最终会限制弹性成像。

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