Despite its critical importance in visual function, maintenance of corneal integrity and ocular comfort, the dynamic variation of the tear film and tear meniscus (tear dynamics) remains one of the most neglected components of the eye. This neglect is due in large part to the extreme difficulty of quantitatively measuring the tears over the ocular surface since they keep changing during blinks. The purpose of this proposal is to develop a highly innovative, rapidly measured and comprehensive metric of tear quality and quantity that has a potentially high impact on a wide range of tear film studies. The metric to be developed is based on a precise and rapidly repeated cross-section of the tear over the cornea and around the eyelids, using a newly developed real-time optical coherence tomographer (OCT). The dynamic variation of the tear film thickness and tear menisci around the both eyelids has been successfully demonstrated for the first time, in normal subjects, to provide a full description of the tear dynamics. We hypothesize that this method will also provide reliable information on the characterization of the tear dynamics in the most challenging cases, such as elderly people or patients with dry eye syndrome who have difficulty with fixation, oculomotor stabilization and blink suppression (SA1). Our experiments will test and validate this method in normal and challenging subjects to characterize the tear dynamics and their relations with commonly used tear tests (such as tear breakup time and Schirmer's test). Development of this novel benchmark will have a high impact on further studies, for instance, to evaluate the effect of the tear dynamics on optical aberrations and ocular comfort, and to develop new approaches to the diagnosis and treatments of abnormalities of tearing (e.g. dry eye). ? ?

Agency
National Institute of Health (NIH)
Institute
National Eye Institute (NEI)
Type
Small Research Grants (R03)
Project #
7R03EY016420-02
Application #
7122347
Study Section
Special Emphasis Panel (ZEY1-VSN (01))
Program Officer
Shen, Grace L
Project Start
2005-09-30
Project End
2008-08-31
Budget Start
2006-09-01
Budget End
2007-08-31
Support Year
2
Fiscal Year
2006
Total Cost
$149,040
Indirect Cost
Name
University of Miami School of Medicine
Department
Ophthalmology
Type
Schools of Medicine
DUNS #
052780918
City
Miami
State
FL
Country
United States
Zip Code
33146
Zhong, Jianguang; Tao, Aizhu; Xu, Zhe et al. (2014) Whole eye axial biometry during accommodation using ultra-long scan depth optical coherence tomography. Am J Ophthalmol 157:1064-69
Tao, Aizhu; Wang, Jianhua; Chen, Qi et al. (2011) Topographic thickness of Bowman's layer determined by ultra-high resolution spectral domain-optical coherence tomography. Invest Ophthalmol Vis Sci 52:3901-7
Shen, Meixiao; Wang, Michael R; Wang, Jianhua et al. (2010) Entire contact lens imaged in vivo and in vitro with spectral domain optical coherence tomography. Eye Contact Lens 36:73-6
Yuan, Yimin; Wang, Jianhua; Chen, Qi et al. (2010) Reduced tear meniscus dynamics in dry eye patients with aqueous tear deficiency. Am J Ophthalmol 149:932-938.e1
Chen, Qi; Wang, Jianhua; Tao, Aizhu et al. (2010) Ultrahigh-resolution measurement by optical coherence tomography of dynamic tear film changes on contact lenses. Invest Ophthalmol Vis Sci 51:1988-93
Wang, Jianhua; Jiao, Shuliang; Ruggeri, Marco et al. (2009) In situ visualization of tears on contact lens using ultra high resolution optical coherence tomography. Eye Contact Lens 35:44-9
Lujan, Brandon J; Rosenfeld, Philip J; Gregori, Giovanni et al. (2009) Spectral domain optical coherence tomographic imaging of geographic atrophy. Ophthalmic Surg Lasers Imaging 40:96-101
Leng, Theodore; Rosenfeld, Philip J; Gregori, Giovanni et al. (2009) Spectral domain optical coherence tomography characteristics of cuticular drusen. Retina 29:988-93
Lujan, Brandon J; Wang, Fenghua; Gregori, Giovanni et al. (2008) Calibration of fundus images using spectral domain optical coherence tomography. Ophthalmic Surg Lasers Imaging 39:S15-20
Leng, Theodore; Lujan, Brandon J; Yoo, Sonia H et al. (2008) Three-dimensional spectral domain optical coherence tomography of a clear corneal cataract incision. Ophthalmic Surg Lasers Imaging 39:S132-4

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