Monitoring of size and dynamics of thrombus in artificial blood flow using laser speckle image analysis

IF 1.1 4区 物理与天体物理 Q4 OPTICS
Naomichi Yokoi, Yoshihisa Aizu
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引用次数: 0

Abstract

The formation of thrombus in blood may be a cause of thrombosis which induces symptoms, such as myocardial infarction, cerebral infarction, and economy class syndrome. Recently, investigations on blood flows inside artificial blood vessel and artificial organ have been performed energetically for clinical application. Thus, in vitro monitoring of thrombogenesis in blood flow inside them is thought to be essential to optimize their function for stable blood perfusion in such as artificial dialysis system and blood transfusion system. In the present study, we propose a method for monitoring the size and dynamics of thrombus in artificial blood flow using speckle patterns obtained under the illumination of coherent light. We experimentally discuss the spatial and temporal variation information on speckle patterns in relation to the size and dynamics of thrombus, respectively, under illumination of a laser diode. The above information contributes to the quantification of degree of thrombogenesis. Experimental results show the feasibility of the present method for in vitro monitoring of the formation of thrombus in artificial blood flow.

用激光散斑图像分析监测人工血流中血栓的大小和动态
血液中血栓的形成可能是血栓形成的原因之一,血栓形成可诱发心肌梗死、脑梗死、经济舱综合征等症状。近年来,对人工血管和人工器官内血流的研究已成为临床应用的热点。因此,体外监测其内部血流中的血栓形成被认为是优化其功能以稳定血液灌注的必要条件,如人工透析系统和输血系统。在本研究中,我们提出了一种在相干光照射下获得的斑点模式来监测人工血流中血栓的大小和动态的方法。在激光二极管的照射下,我们实验地讨论了与血栓大小和动态相关的散斑模式的时空变化信息。上述信息有助于血栓形成程度的量化。实验结果表明,该方法对人工血流中血栓形成的体外监测是可行的。
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来源期刊
Optical Review
Optical Review 物理-光学
CiteScore
2.30
自引率
0.00%
发文量
62
审稿时长
2 months
期刊介绍: Optical Review is an international journal published by the Optical Society of Japan. The scope of the journal is: General and physical optics; Quantum optics and spectroscopy; Information optics; Photonics and optoelectronics; Biomedical photonics and biological optics; Lasers; Nonlinear optics; Optical systems and technologies; Optical materials and manufacturing technologies; Vision; Infrared and short wavelength optics; Cross-disciplinary areas such as environmental, energy, food, agriculture and space technologies; Other optical methods and applications.
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