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Harmonic motion detection in a vibrating scattering medium

机译:振动散射介质中的谐波运动检测

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摘要

Elasticity imaging is an emerging medical imaging modality that seeks to map the spatial distribution of tissue stiffness. Ultrasound radiation force excitation and motion tracking using pulse-echo ultrasound have been used in numerous methods. Dynamic radiation force is used in vibrometry to cause an object or tissue to vibrate, and the vibration amplitude and phase can be measured with exceptional accuracy. This paper presents a model that simulates harmonic motion detection in a vibrating scattering medium incorporating 3-D beam shapes for radiation force excitation and motion tracking. A parameterized analysis using this model provides a platform to optimize motion detection for vibrometry applications in tissue. An experimental method that produces a multifrequency radiation force is also presented. Experimental harmonic motion detection of simultaneous multifrequency vibration is demonstrated using a single transducer. This method can accurately detect motion with displacement amplitude as low as 100 to 200 nm in bovine muscle. Vibration phase can be measured within 10deg or less. The experimental results validate the conclusions observed from the model and show multifrequency vibration induction and measurements can be performed simultaneously.
机译:弹性成像是一种新兴的医学成像方法,旨在绘制组织刚度的空间分布图。使用脉冲回波超声的超声辐射力激励和运动跟踪已被用于许多方法中。动态辐射力被用于振动测量中,以引起物体或组织振动,并且振动幅度和相位可以非常精确地测量。本文提出了一个模型,该模型在结合了3-D光束形状的振动散射介质中模拟谐波运动检测,以进行辐射力激励和运动跟踪。使用此模型的参数化分析提供了一个平台,可以优化组织中振动测量应用的运动检测。还提出了一种产生多频辐射力的实验方法。使用单个传感器演示了同时多频振动的实验谐波运动检测。这种方法可以准确地检测出牛肌肉位移幅度低至100至200 nm的运动。振动相位可以在10度以下测量。实验结果验证了从模型中观察到的结论,并表明多频振动感应和测量可以同时进行。

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