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Engineering imaging: using particle image velocimetry to see physiology in a new light.

机译:工程成像:使用粒子图像测速仪以新的视角看待生理。

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摘要

1. Despite the array of sophisticated imaging techniques available for biological applications, none of the standard biomedical techniques adequately provides the capability to measure motion and flow. Those techniques currently in use are particularly lacking in spatial and temporal resolution. 2. Herein, we introduce the technique of particle image velocimetry. This technique is a well-established tool in engineering research and industry. Particle image velocimetry is continuing to develop and has an increasing number of variants. 3. Three case studies are presented: (i) the use of microparticle image velocimetry to study flow generated by high-frequency oscillatory ventilation in a human airway model; (ii) the use of stereoparticle image velocimetry to study stirred cell and tissue culture devices; and (iii) a three-dimensional X-ray particle image velocimetry technique used to measure flow in an in vitro vascular flow model. 4. The case studies highlight the vast potential of applying the engineering technique of particle image velocimetry and its many variants to current research problems in physiology.
机译:1.尽管有一系列可用于生物学应用的复杂成像技术,但没有一种标准的生物医学技术能够充分提供测量运动和流量的能力。当前正在使用的那些技术在空间和时间分辨率上特别缺乏。 2.在这里,我们介绍粒子图像测速技术。该技术是工程研究和工业中公认的工具。粒子图像测速技术正在不断发展,并且具有越来越多的变体。 3.提出了三个案例研究:(i)使用微粒图像测速法研究人气道模型中高频振荡通气产生的流量; (ii)使用立体粒子图像测速仪研究搅拌的细胞和组织培养装置; (iii)三维X射线粒子图像测速技术,用于测量体外血管流动模型中的流动。 4.案例研究突出了将粒子图像测速技术及其许多变体应用于当前生理学研究问题的巨大潜力。

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