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High-resolution, three-dimensional whole body ultrasound imaging system

机译:高分辨率三维全身超声成像系统

摘要

This invention incorporates the techniques of geophysical technology into medical imaging. Ultrasound waves are generated from multiple, simultaneous sources tuned for maximum penetration, resolution, and image quality. Digitally recorded reflections from throughout the body are combined into a file available for automated interpretation and wavelet attribute analyses. Unique points within the object are imaged from multiple positions for signal-to-noise enhancement and wavelet velocity determinations.PPThis system describes gaining critical efficiencies by reducing equation variables to known quantities. Sources and receivers are locked in invariant, known positions. Statistically valid measurements of densities and wavelet velocities are combined with object models and initial parameter assumptions. This makes possible three-dimensional images for viewing manipulation, mathematical analyses, and detailed interpretation, even of the body in motion. PP The invention imposes a Cartesian coordinate system on the image of the object. This makes reference to any structure within the object repeatable and precise. Finally, the invention teaches how the recording and storing of the received signals from a whole body analysis makes a subsequent search for structures and details within the object possible without reexamining the object.
机译:本发明将地球物理技术结合到医学成像中。超声波是由多个同时产生的信号源产生的,这些信号源经过调整可实现最大的穿透力,分辨率和图像质量。来自整个身体的数字记录的反射被合并到一个文件中,该文件可用于自动解释和小波属性分析。从多个位置对对象内的唯一点进行成像,以增强信噪比并确定小波速度。

该系统描述了通过将方程变量减少到已知数量来提高临界效率的方法。源和接收器锁定在不变的已知位置。统计上有效的密度和小波速度测量值与对象模型和初始参数假设结合在一起。这使得即使在运动中的身体也可以用于观看操纵,数学分析和详细解释的三维图像。本发明在对象的图像上施加了笛卡尔坐标系。这使得对对象内任何结构的引用都是可重复且精确的。最后,本发明教导了如何记录和存储来自全身分析的接收信号,从而可以在不重新检查对象的情况下随后搜索对象内的结构和细节。

著录项

  • 公开/公告号US6135960A

    专利类型

  • 公开/公告日2000-10-24

    原文格式PDF

  • 申请/专利权人 HOLMBERG;LINDA JEAN;

    申请/专利号US19980143901

  • 发明设计人 LINDA JEAN HOLMBERG;

    申请日1998-08-31

  • 分类号A61B8/00;

  • 国家 US

  • 入库时间 2022-08-22 01:35:55

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