Journal of Applied Optics, Volume. 43, Issue 5, 1007(2022)
Circumferential stress measurement of blood vessels model in vitro based on fiber Bragg grating sensor
[1] SU Haoran, LI Kexin, LIU Xiao, et al. Microfluidic chips for the endothelial biomechanics and mechanobiology of the vascular system[J]. Biocell, 45, 797-811(2021).
[2] AMAYA R, PIERIDES A, TARBELL J M. The interaction between fluid wall shear stress and solid circumferential strain affects endothelial gene expression[J]. PLoS One, 10, e0129952(2015).
[3] DING Hao, LIU Yujia, ZHANG Ying, . Development of an in vitro loading device for circumferential stress of mural coronary arteries[J]. Journal of Medical Biomechanics, 35, 311-318(2020).
[4] HUO Yunlong. Coronary circulation and myocardial mechanical properties[J]. Journal of Medical Biomechanics, 34, 40-41(2019).
[5] ZHANG Xiaosheng, QIN Kairong, SHEN Baorong, . Mean wall shear stress and circumferential stress in common carotid artery in spontaneously hypertensive rats[J]. Journal of Medical Biomechanics, 21, 262-266(2006).
[6] DING Hao, ZHAO Lingxi, SHANG Kun, . A study on circumferential stress with “myocardial bridge-coronary artery” simulative device[J]. Chinese Journal of Biomedical Engineering, 30, 276-280(2011).
[7] [7] SUN Xu. Hemodynamic simulation experimental study of atherosclerotic plaque blood vessels[D]. Harbin: Harbin Institute of Technology, 2019.
[8] SAMAEE M, TAFAZZOLI-SHADPOUR M, ALAVI H. Coupling of shear-circumferential stress pulses investigation through stress phase angle in FSI models of stenotic artery using experimental data[J]. Medical & Biological Engineering & Computing, 55, 1147-1162(2017).
[9] GHOLIPOUR A, GHAYESH M H, ZANDER A, et al. Three-dimensional biomechanics of coronary arteries[J]. International Journal of Engineering Science, 130, 93-114(2018).
[10] [10] FANG Zhaolun. Fabrication application of microfluidic analysis chip [M]. Beijing: Chemical Industry Press, 2005.
[11] FAN Yiqiang, CHAI Dongping, HUANG Lei, . Standardization of microfluidics: review and outlook[J]. Standard Science, 46-52(2019).
[12] ZHAO Yong, HU Xuguang, HU Sheng, et al. Applications of fiber-optic biochemical sensor in microfluidic chips: a review[J]. Biosensors and Bioelectronics, 166, 112447(2020).
[13] MASSARONI C, ZALTIERI M, LO PRESTI D, et al. Fiber Bragg grating sensors for cardiorespiratory monitoring: a review[J]. IEEE Sensors Journal, 21, 14069-14080(2021).
[14] JIA Danping, CAO Can, MA Hechi. Research on force sensing technology based on Fiber Bragg grating[J]. Sensor technology and application, 7, 95-103(2019).
[15] WU Zutang, CHEN Zhijun, ZOU Hong, . Study on application and principle of strain measurement based on fiber Bragg grating sensor in material model experiment[J]. Machine Design & Research, 28, 82-84(2012).
[16] YOU Xiaoping, WANG Qiaolan. Design and implementation of array digital lithography 3D printing technology[J]. Digital Space, 5-6(2018).
[17] SUN Shishan. Precision machining technology and its development trend[J]. Papermaking Equipment & Materials, 50, 91-93(2021).
[18] [18] QI Li, ZHU Jiang, HANCOCK A M, et al. Volumetric vessel reconstruction method f absolute blood flow velocity measurement in Doppler OCT images[J]. SPIE, 2017, 10053: 267270.
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Yan ZHANG, Fan ZHANG, Guanqi ZHAO, Daping CHU. Circumferential stress measurement of blood vessels model in vitro based on fiber Bragg grating sensor[J]. Journal of Applied Optics, 2022, 43(5): 1007
Category: FIBER SENSING AND OPTICAL COMMUNICATION
Received: Jan. 18, 2022
Accepted: --
Published Online: Oct. 12, 2022
The Author Email: Fan ZHANG (zhangfan@bistu.edu.cn)