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The attenuation compensated C-mode flowmeter: a new Doppler method for blood volume flow measurement

机译:衰减补偿C模式流量计:一种用于血量流量测量的新多普勒方法

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Blood volume flow rate is a fundamental physiological parameter related to organ function. Its measurement using ultrasound, however, has not achieved widespread acceptance due to inaccuracy and difficulties of implementation. By replacing the conventional B-mode approach with a Doppler C-scan, the velocity orthogonal to a plane that transects the vessel is sampled, and can be integrated over an area larger than the lumen projection to yield the volume flow rate without the need to measure the Doppler angle or lumen area directly. However, this Doppler C-mode method suffers from partial volume error near the edge of the vessel. The authors address this problem by scaling each local mean velocity by the corresponding Doppler power before integration. Here, the authors present the basic theory and experimental investigation of this new technique of volume flow measurement. In vitro measurement of flow in a steady state flow phantom, using a mechanically scanned 5 MHz pulsed Doppler transducer, had a mean error of -10 mL/min, and an error distribution with a standard deviation of 17 mL/min for flow rates of 50-350 mL/min, and with Doppler angles of 50-70 degrees. These results are promising and suggest that the method is suitable for implementation in future on a real time 2D array system.
机译:血容量流速是与器官功能相关的基本生理参数。然而,它使用超声的测量,由于不准确和实施困难,尚未实现广泛的接受。通过用多普勒C扫描更换传统的B模式方法,采样与横断血管的平面正交的速度,并且可以集成在比内腔投影大的面积上,以产生体积流量而不需要直接测量多普勒角度或内腔区域。然而,这种多普勒C模式方法遭受船舶边缘附近的部分体积误差。作者通过在集成之前通过相应的多普勒电源缩放每个局部平均速度来解决这个问题。在这里,作者呈现了这种体积流量测量新技术的基本理论和实验研究。使用机械扫描的5MHz脉冲多普勒换能器在稳态流动体内流动测量,具有-10mL / min的平均误差,以及标准偏差为17ml / min的误差分布,用于流速50-350毫升/分钟,多普勒角为50-70度。这些结果是有前途的,并表明该方法适用于实时2D阵列系统的将来实现。

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