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Color ultrasound imaging and detection technique based on nonlinear spectra

机译:基于非线性光谱的彩色超声成像与检测技术

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Conventional ultrasound imaging technology used the amplitude information in the ultrasonic linear signal to form grayscale images. Doctors identified the tissues in grayscale images by their structures. Due to the requirement of specific positions and orientations of the ultrasonic probe, this method relied heavily on the doctor's experience and resulted in a high misdiagnosis rate. Compared with ultrasound linear signal, the nonlinear signal contained more information such as frequency and phase that can be used in ultrasound imaging. So we proposed a spectral-based color ultrasound imaging technique based on nonlinear vibration in this paper. First, we used wavelet transform to analyze spectral features. Then, the spectral features were analyzed by principal component analysis to reduce the dimension. Finally, different tissues with different spectral features were color-coded according to the projected coordinates in the eigenspace formed by the principal components, thereby realizing the use of feature colors to distinguish various biological tissues. The experimental results demonstrated that different tissues could be recognized clearly by feature colors, which verified the feasibility of this technique. This technique pioneers the way to ultrasound diagnosis without the necessity of specific positions or orientations of ultrasound probes, reducing the complexity and promoting the efficiency significantly.
机译:传统的超声成像技术使用超声线性信号中的幅度信息来形成灰度图像。医生通过其结构在灰度图像中识别出这些组织。由于超声探头的特定位置和方向的要求,因此该方法严重依赖医生的经验,并且导致较高的误诊率。与超声线性信号相比,非线性信号包含更多可用于超声成像的信息,例如频率和相位。因此,本文提出了一种基于非线性振动的基于光谱的彩色超声成像技术。首先,我们使用小波变换来分析频谱特征。然后,通过主成分分析来分析光谱特征以减小尺寸。最后,根据主成分形成的本征空间中的投影坐标,对具有不同光谱特征的不同组织进行颜色编码,从而实现了利用特征色来区分各种生物组织。实验结果表明,特征颜色可以清楚地识别出不同的组织,从而证明了该技术的可行性。该技术开创了超声诊断的方法,而无需特定的超声探头特定位置或方向,从而降低了复杂性并显着提高了效率。

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