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Issue title: Selected Papers of the Joint Conference of the ESCHM-ISCH-ISB-2018, 2-6 July, 2018, Krakow, Poland
Guest editors: F. Jung and M. Fornal
Article type: Research Article
Authors: Lee, Hoyoona | Na, Wonwhib | Lee, Byoung-Kwonc | Lim, Chae-Seungd | Shin, Sehyuna; b; *
Affiliations: [a] Department of Mechanical Engineering, Korea University, Seoul, Korea | [b] Engineering Research Center for Biofluid Biopsy, Korea University, Seoul, Korea | [c] Department of Internal Medicine, Gangnam Severance Hospital, Yonsei University Medical College, Seoul, Korea | [d] Department of Laboratory Medicine, Guro Hospital, Korea University, Seoul, Korea
Correspondence: [*] Corresponding author: Sehyun Shin. E-mail: [email protected]. URL: http://bioeng.korea.ac.kr
Abstract: The analysis of platelet aggregation and thrombosis kinetics has significantly advanced with progress in microfluidic technology. However, the results of platelet aggregation tests do not fully reflect the observed clinical outcomes. To address the present unmet clinical needs, the basic but essential biology of platelets should be reconsidered in relation to the characteristics of microfluidic systems employed for platelet tests. To this end, the present article provides an overview of commercially available point of care devices and focuses on recent microfluidic studies, describing their measurement principles. We critically discuss the characteristics of the microfluidics systems used to evaluate the complex processes underlying platelet aggregation, and that are specifically designed to mimic the pathophysiological environment of blood vessels, including hemodynamic factors as well as blood vessel injury. To this end, we summarize unsolved issues related to the application of platelet function tests based on microfluidics. Overall, we confirm that platelet function tests based on microfluidics provide a versatile platform that encompasses a variety of basic research, as well as clinical diagnostic applications.
Keywords: Platelets, function, test, microfluidic, diagnostic
DOI: 10.3233/CH-189416
Journal: Clinical Hemorheology and Microcirculation, vol. 71, no. 2, pp. 249-266, 2019
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