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Pulsed photoacoustic flow imaging of whole blood with low-frequency detection

机译:具有低频检测的全血的脉冲光声流量成像

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Ultrasound flow imaging is widely used for quantification of blood flow in vivo, but estimating low flow velocities remains challenging. Pulsed photoacoustic flowmetry could be an alternative - but has not been shown capable of deep in vivo imaging so far. A new photoacoustic system is proposed, that has more potential for deep in-vivo applications. In this work the system is tested in vitro. In contrast to earlier research, 1064 nm NIR laser irradiation is used, that would allow deeper in-vivo light penetration. For detection, a 15 MHz transducer with lower in-vivo tissue ultrasound attenuation is used. Both changes are not trivial, as they reduce the overall visibility of the photoacoustic signals from red blood cells. This work shows the flow estimation performance of this system in vitro, and aims to serve as a point of reference when moving to an in-vivo application. Using this 15 MHz transducer, ID flow profiles of flowing blood were extracted. The jitter (standard error) in the velocity estimation over the profiles was 10% when estimating flow of particles and 20% with whole blood; the bias in flow estimation was roughly 30%.
机译:超声波成像广泛用于体内血流的量化,但估计低流速仍然存在挑战性。脉冲光声流动性可能是替代方案 - 但迄今为止尚未表现出深入的体内成像。提出了一种新的光声系统,对体内深度应用具有更多潜力。在这项工作中,系统在体外测试。与早期的研究相比,使用了1064nm的激光照射,这将允许更深的体内光渗透。对于检测,使用具有较低体内组织超声衰减的15MHz换能器。这两种变化都不是微不足道的,因为它们降低了红细胞的光声信号的总体可见性。这项工作显示了在体外流动估计该系统的流程性能,并旨在作为移动到体内应用时的参考点。使用该15 MHz换能器,提取流动血液的ID流程轮廓。当估计颗粒流量和全血20%时,曲线速度估计中的抖动(标准误差)为10%;流量估计的偏差大约是30%。

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