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Adaptive gain control and contrast improvement for medical diagnostic ultrasound B-mode imaging system using charge-coupled devices

机译:使用电荷耦合器件的医学诊断超声B模式成像系统的自适应增益控制和对比度改善

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A B-mode ultrasound imaging system operates by transmitting a high-frequency sound pulse and measuring the strength and time of flight of the reflected signal. The ultrasound signal may be attenuated as much as 60 dB in its round trip to a target and must be normalized so that contrast is not lost in the far field. Manual controls for adjusting receiver gain versus depth are common in many clinical uses but are impractical in most surgical applications. The goal of this project was to design a circuit to automatically adjust the gain. A two-dimensional low-pass filter is used to approximate the returned signal's local average value which is a measure of the total attenuation, scattering, and beam spreading experienced by the ultrasound energy. The attenuation is compensated by dividing the returned signal by its average value to remove the attenuation.
机译:B模式超声成像系统通过发射高频声脉冲并测量反射信号的强度和飞行时间来进行操作。超声信号在与目标的往返行程中可能会衰减多达60 dB,并且必须进行标准化,以便在远场中不会丢失对比度。在许多临床应用中,用于调节接收器增益随深度变化的手动控制很常见,但在大多数外科手术应用中并不实用。该项目的目标是设计一种电路,以自动调节增益。二维低通滤波器用于近似返回信号的局部平均值,该平均值是超声能量所经历的总衰减,散射和波束扩展的量度。通过将返回信号除以其平均值来补偿衰减,以消除衰减。

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