机构:[1]Interdisciplinary Division of Biomedical Engineering, Hong Kong Polytechnic University, Kowloon, Hong Kong SAR 999077, China[2]Beijing Institute of Ophthalmology, Beijing Tongren Eye Center, Beijing Tongren Hospital, Capital Medical University ,Beijing Ophthalmology & Visual Sciences Key Laboratory, National Engineering Research Center for Ophthalmology, Beijing 100730, China研究所眼科研究所首都医科大学附属北京同仁医院首都医科大学附属同仁医院
The paper presents a novel analysis method of corneal elasticity and viscosity based on corneal visualization Scheimpflug technology (CorVis ST) for keratoconus diagnosis. Methods for air puff force measurement and corneal imaging boundary extraction were proposed. Corneal biomechanical properties, described as tangent stiffness coefficient (STSC) and energy absorbed area (A(absorbed)), were assessed using the curves of the applied air puff force with corneal displacement to form a loading-unloading cycle. Twenty-five patients with keratoconus and 34 healthy control subjects, matched for intraocular pressure (IOP), were enrolled in this prospective study. The results showed that the intraclass correlation coefficients (ICC) of the STSC and Aabsorbed were 0.941 and 0.878 in Healthy group; and were 0.891 and 0.809 in Keratoconus group, respectively. Both STSC and Aabsorbed of keratoconus patients were significantly different from that of controls (both probability value P < 0.001). ROC curve analysis showed that the area under curve for STSC was 0.918 and for Aabsorbed was 0.894, which reached a good level of predictive accuracy for detecting keratoconus. Our results demonstrated that this new analysis method could be used to characterize the biomechanical properties of corneas. [GRAPHICS] (a) The air puff force of CorVis ST was measured by a custom-designed force detection system. (b) Corneal displacement was extracted from CorVis ST using a proposed imaging analysis. (c) With the utilization of the air puff force and corneal dynamic displacement, an analysis method was developed to introduce new corneal biomechanical parameters - S-TSC and A(absorbed).
基金:
National Natural Science Foundation of ChinaNational Natural Science Foundation of China (NSFC) [81271052]; Hong Kong Polytechnic University Joint PhD Supervision SchemeHong Kong Polytechnic University [G-UB58]; priming scientific research foundation for the junior researcher in Beijing Tongren Hospital, Capital Medical University [2015-YJJ-ZZL-008]
语种:
外文
被引次数:
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PubmedID:
中科院(CAS)分区:
出版当年[2015]版:
大类|3 区生物
小类|2 区生化研究方法2 区光学3 区生物物理
最新[2023]版:
大类|3 区物理与天体物理
小类|2 区生物物理3 区生化研究方法3 区光学
JCR分区:
出版当年[2014]版:
Q1BIOCHEMICAL RESEARCH METHODSQ1BIOPHYSICSQ1OPTICS
最新[2023]版:
Q3BIOCHEMICAL RESEARCH METHODSQ3BIOPHYSICSQ3OPTICS
第一作者机构:[1]Interdisciplinary Division of Biomedical Engineering, Hong Kong Polytechnic University, Kowloon, Hong Kong SAR 999077, China
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推荐引用方式(GB/T 7714):
Wang Li-Ke,Tian Lei,Zheng Yong-Ping.Determining in vivo elasticity and viscosity with dynamic Scheimpflug imaging analysis in keratoconic and healthy eyes[J].JOURNAL OF BIOPHOTONICS.2016,9(5):454-463.doi:10.1002/jbio.201500245.
APA:
Wang, Li-Ke,Tian, Lei&Zheng, Yong-Ping.(2016).Determining in vivo elasticity and viscosity with dynamic Scheimpflug imaging analysis in keratoconic and healthy eyes.JOURNAL OF BIOPHOTONICS,9,(5)
MLA:
Wang, Li-Ke,et al."Determining in vivo elasticity and viscosity with dynamic Scheimpflug imaging analysis in keratoconic and healthy eyes".JOURNAL OF BIOPHOTONICS 9..5(2016):454-463