首页> 外文会议>Ultrasonic Imaging and Signal Processing; Progress in Biomedical Optics and Imaging; vol.7 no.33 >Automatic time gain compensation and dynamic range control in ultrasound imaging systems
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Automatic time gain compensation and dynamic range control in ultrasound imaging systems

机译:超声成像系统中的自动时间增益补偿和动态范围控制

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摘要

For efficient and accurate diagnosis of ultrasound images, the appropriate time gain compensation (TGC) and dynamic range (DR) control of ultrasound echo signals are important. TGC is used for compensating the attenuation of ultrasound echo signals along the depth, and DR is for controlling the image contrast. In recent ultrasound systems, those two factors are automatically set by a system and/or manually adjusted by an operator to obtain the desired image quality on the screen. In this paper, we propose an algorithm to find the optimized parameter values for TGC and DR automatically. In TGC optimization, we determine the degree of attenuation compensation along the depth by reliably estimating the attenuation characteristic of ultrasound signals. For DR optimization, we define a novel cost function by properly using the characteristics of ultrasound images. Experimental results are obtained by applying the proposed algorithm to a real ultrasound (US) imaging system. The results prove that the proposed algorithm automatically sets values of TGC and DR in real-time so that the subjective quality of the enhanced ultrasound images may become good enough for efficient and accurate diagnosis.
机译:为了高效,准确地诊断超声图像,超声回波信号的适当时间增益补偿(TGC)和动态范围(DR)控制非常重要。 TGC用于补偿超声回波信号沿深度的衰减,DR用于控制图像对比度。在最近的超声系统中,这两个因素由系统自动设置和/或由操作员手动调整以获得屏幕上所需的图像质量。在本文中,我们提出了一种算法,可以自动找到TGC和DR的最佳参数值。在TGC优化中,我们通过可靠地估计超声信号的衰减特性来确定沿深度的衰减补偿程度。对于DR优化,我们通过适当使用超声图像的特征来定义新的成本函数。通过将提出的算法应用于真实的超声(US)成像系统获得实验结果。实验结果表明,所提出的算法能够实时自动设置TGC和DR的值,从而增强后的超声图像的主观质量可能足以有效,准确地进行诊断。

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