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首页> 外文期刊>Ultrasonic Imaging: An International Journal >Modeling of the correlation of analytic ultrasound radiofrequency signals for angle-independent motion detection.
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Modeling of the correlation of analytic ultrasound radiofrequency signals for angle-independent motion detection.

机译:用于角度无关运动检测的解析超声射频信号的相关性建模。

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摘要

Conventional pulsed ultrasound systems are able to assess motion of scatterers in the direction of the ultrasound beam, i.e., axial motion, by determining the lag at which the maximum correlation occurs between consecutively-received radiofrequency (rf) signals. The accuracy, resolution, and processing time of this technique is improved by making use of a model for the correlation of rf signals. All previously-described correlation models only include axial motion, but it is common knowledge that lateral motion, i.e., motion in the plane perpendicular to the beam axis, reduces the correlation of rf signals in time. In the present paper, a model for the correlation of analytic rf signals in depth and time is derived and verified. It also includes, aside of some signal and transducer parameters, both axial and lateral motion. The influence of lateral motion on the correlation of (analytic) rf signals is strongly related to local phase and amplitude characteristics of the ultrasound beam. It is shown how the correlation model, making use of an ultrasound transducer with a circular beam shape, can be applied to estimate, independent of angle, the magnitude of the actual motion. Furthermore, it is shown that the model can be applied to estimate the local signal-to-noise ratio and rf bandwidth.
机译:常规脉冲超声系统能够通过确定在连续接收的射频(rf)信号之间出现最大相关的滞后来评估散射体在超声束方向上的运动,即轴向运动。通过使用用于rf信号相关的模型,可以提高该技术的准确性,分辨率和处理时间。先前描述的所有相关模型都仅包括轴向运动,但是众所周知,横向运动,即在垂直于光束轴的平面上的运动,会及时减小rf信号的相关性。本文推导并验证了射频信号在深度和时间上的相关性模型。除了某些信号和换能器参数外,它还包括轴向和横向运动。横向运动对(解析)rf信号的相关性的影响与超声束的局部相位和幅度特性密切相关。示出了如何利用具有圆形束形状的超声换能器的相关模型来独立于角度估计实际运动的大小。此外,表明该模型可以应用于估计局部信噪比和射频带宽。

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