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Velocity measurements in whole blood using acoustic resolution photoacoustic Doppler

机译:使用声学分辨率光声多普勒测量全血中的速度

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摘要

Acoustic resolution photoacoustic Doppler velocimetry promises to overcome the spatial resolution and depth penetration limitations of current blood flow measuring methods. Despite successful implementation using blood-mimicking fluids, measurements in blood have proved challenging, thus preventing in vivo application. A common explanation for this difficulty is that whole blood is insufficiently heterogeneous relative to detector frequencies of tens of MHz compatible with deep tissue photoacoustic measurements. Through rigorous experimental measurements we provide new insight that refutes this assertion. We show for the first time that, by careful choice of the detector frequency and field-of-view, and by employing novel signal processing methods, it is possible to make velocity measurements in whole blood using transducers with frequencies in the tens of MHz range. These findings have important implications for the prospects of making deep tissue measurements of blood flow relevant to the study of microcirculatory abnormalities associated with cancer, diabetes, atherosclerosis and other conditions.
机译:声分辨率光声多普勒测速仪有望克服当前血流测量方法的空间分辨率和深度穿透限制。尽管使用模仿血液的流体成功实施,但已证明在血液中进行测量具有挑战性,因此妨碍了体内应用。关于此困难的一个常见解释是,相对于与深层组织光声测量兼容的数十MHz的检测器频率,全血的异质性不足。通过严格的实验测量,我们提供了新的见解来驳斥这一主张。我们首次表明,通过精心选择检测器的频率和视野,并采用新颖的信号处理方法,可以使用频率在几十MHz范围内的换能器对全血进行速度测量。这些发现对进行深层组织血流测量与癌症,糖尿病,动脉粥样硬化和其他疾病相关的微循环异常研究具有重要意义。

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