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High-resolution wave-theory-based ultrasound reflection imaging using the split-step fourier and globally optimized fourier finite-difference methods

机译:使用分步傅立叶和全局优化傅立叶有限差分方法的高分辨率基于波理论的超声反射成像

摘要

Methods for enhancing ultrasonic reflection imaging are taught utilizing a split-step Fourier propagator in which the reconstruction is based on recursive inward continuation of ultrasonic wavefields in the frequency-space and frequency-wave number domains. The inward continuation within each extrapolation interval consists of two steps. In the first step, a phase-shift term is applied to the data in the frequency-wave number domain for propagation in a reference medium. The second step consists of applying another phase-shift term to data in the frequency-space domain to approximately compensate for ultrasonic scattering effects of heterogeneities within the tissue being imaged (e.g., breast tissue). Results from various data input to the method indicate significant improvements are provided in both image quality and resolution.
机译:利用分步傅立叶传播器教导了用于增强超声反射成像的方法,其中,重建是基于在频率空间和频率波数域中超声场的递归向内连续。每个外推间隔内的向内延续包括两个步骤。第一步,将相移项应用于频率波数域中的数据,以在参考介质中传播。第二步包括对频域中的数据应用另一个相移项,以近似补偿被成像组织(例如乳房组织)内异质性的超声散射效应。从输入该方法的各种数据得出的结果表明,图像质量和分辨率均得到了显着改善。

著录项

  • 公开/公告号US8568318B2

    专利类型

  • 公开/公告日2013-10-29

    原文格式PDF

  • 申请/专利权人 LIANJIE HUANG;

    申请/专利号US20080033841

  • 发明设计人 LIANJIE HUANG;

    申请日2008-02-19

  • 分类号A61B8/00;

  • 国家 US

  • 入库时间 2022-08-21 16:45:29

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