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Automatic Time Gain Compensation in Ultrasound Imaging System

机译:超声成像系统中的自动时间增益补偿

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摘要

Many automatic time gain compensations are proposed, but most of them depart from the assumption that ultrasound signals are homogenous attenuated across examined tissues, which is often violated. In real ultrasound system, the large attenuation variation between different types of tissues confused the attenuation compensation. In this paper, considering the frequency shift effect, we propose the quadratic least square fitting to estimate the attenuation profile. Further, as for the large attenuation variations in image, especially around the anechoic regions, we proposed a new algorithm by adding two power functions to control the gain range and reduce the affluence of overwhelming gain value caused by noise and edges around anechoic regions. Test results of phantoms and ultrasound images show the new algorithm could effectively adapt to the large attenuation variation and provide a desired uniform image.
机译:提出了许多自动时间增益补偿,但是它们中的大多数都偏离了超声信号在被检查组织之间均匀衰减的假设,而这通常是违反的。在实际的超声系统中,不同类型组织之间的大衰减变化混淆了衰减补偿。在本文中,考虑到频移效应,我们提出了二次最小二乘拟合来估计衰减曲线。此外,对于较大的图像衰减变化,尤其是在无回声区域附近,我们提出了一种新算法,通过添加两个幂函数来控制增益范围,并减少由噪声和无回声区域周围的边缘引起的压倒性增益值的富裕程度。体模和超声图像的测试结果表明,该新算法可以有效地适应较大的衰减变化,并提供所需的均匀图像。

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