Cornea

Adler CA, Maurice DM, Paterson ME. The effect of viscosity of the vehicle on the penetration of fluorescein into the human eye. Exp Eye Res 11:34-42 (1971). PubMed

Allansmith M, DeRamus A, Maurice DM. The dynamics of IgG in the cornea. Invest Ophthalmol Vis Sci 18:947-955 (1979). PubMed

Araie M, Eguchi S, Matsumoto S. The in vitro effects of intraocular irrigating solutions on barrier function of corneal endothelium and the corneal swelling rate (S/P). Acta Soc Ophthalmol Jpn 92:127 (1988). PubMed

Araie M. Acute effects of topical phenylephrine on aqueous humor dynamics and corneal endothelial permeability in man. Jpn J Ophthalmol 27:340-345 (1983). PubMed

Araie M. Barrier function of corneal endothelium and the intraocular irrigating solutions. Arch Ophthalmol 104:435-438 (1986). PubMed

Araie M. Kinetics of intraocular penetration of topical fluorescein: analysis by new method. Jpn J Ophthalmol 27:421-433 (1983). PubMed

Araie M, Maurice D. The rate of diffusion of fluorophores through the corneal epithelium and stroma. Exp Eye Res 44:73-87 (1987). PubMed

Araie M, Maurice DM. A reevaluation of corneal endothelial permeability to fluorescein. Exp Eye Res 41:383-390 (1985). PubMed

Beneyto P, Gutierrez R, Perez TM.  Comparative study of three methods of evaluation of the corneal endothelium in pseudophakic patients: fluorophotometry, specular microscopy and pachymetry.  Graefes Arch Clin Exp Ophthalmol 234:623-627 (1996). PubMed

Beneyto P, Perez TM.  Effect of continued treatment with timolol maleate on corneal endothelium: a fluorophotometric study.  Cornea 17:600-603 (1998). PubMed

Berkowitz RA, Klyce SD, Salisbury JD, Kaufman HE. Fluorophotometric determination of the corneal epithelial barrier after penetrating keratoplasty. Am J Ophthalmol 92:332-335 (1981). PubMed

Boot JA, van Best JA, Stolwijk TR, Sterk CC. Epithelial permeability in corneal grafts by fluorophotometry. Graefes Arch Clin Exp Ophthalmol 229:533- (1991).

Boot JA, van Best JA, Stolwijk TR, Sterk CC, Oosterhuis JA. Fluorophotometric determination of the permeability of the corneal epithelium (cont.) Supp Title: Abstracts from the 183rd Congress… Int Ophthalmol 13:437 (1989).

Bourne WM, Brubaker RF. Decreased endothelial permeability in the iridocorneal endothelial syndrome. Ophthalmology 89:591-595 (1982). PubMed

Bourne WM, Brubaker RF. Decreased endothelial permeability in transplanted corneas. Am J Ophthalmol 96:362-367 (1983). PubMed

Bourne WM, Hodge DO, McLaren JW. Estimation of corneal endothelial pump function in long-term contact lens wearers. Invest Ophthalmol Vis Sci 40(3):603-11 (1999). PubMed

Bourne WM, McLaren JW. Clinical responses of the corneal endothelium. Exp Eye Res. 78(3):561-72 (2004). PubMed

Brubaker RF, Coakes RL, Bourne WM. Effect of timolol on the permeability of corneal endothelium. Ophthalmology 85:711 (1978).

Burns RR, Bourne WM, Brubaker RF. Endothelial function in patients with cornea guttata. Invest Ophthalmol Vis Sci 20:77-85 (1981). PubMed

Burstein NL. Perspective alteration of corneal permeability in humans and rabbits. Invest Ophthalmol Vis Sci 25:1453-1457 (1984). PubMed

Carlson KH, Bourne WM Endothelial morphologic features and function after long-term extended wear of contact lenses Ophthalmology 106:1677-1679 (1988).

Carlson KH, Bourne WM, Brubaker RF. Corneal endothelial permeability to fluorescein in long-term contact lens wearers. Invest Ophthalmol Vis Sci 27(Suppl):139 (1986).

Carlson KH, Bourne WM, Brubaker RF. Effect of long-term contact lens wear on corneal endothelial cell morphology and function. Invest Ophthalmol Vis Sci 29:185-193 (1988).

Carlson KH, Bourne WM, McLaren JW, Brubaker RF. Variations in human corneal endothelial cell morphology and permeability to fluorescein with age. Curr Eye Res 7:27-41 (1988). PubMed

Chang SW, Hu FR, Hou PK.  Corneal epithelial recovery following photorefractive keratectomy.  Br J Ophthalmol 80:663-668 (1996). PubMed

Chang SW, Hu FR, Lin LL. Effects of contact lenses on corneal endothelium – a morphological and functional study. Ophthalmologica 215(3):197-203 (2001). PubMed

Chang SW, Tsai IL, Hu FR, Lin LL, Shih YF. The cornea in young myopic adults. Br J Ophthalmol 85(8):916-20 (2001). PubMed

Coakes RL, Brubaker RF. Method of measuring aqueous humor flow and corneal endothelial permeability using a fluorophotometry monogram. Invest Ophthalmol Vis Sci 18:288-302 (1979). PubMed

Diaz-Valle D, Benitez del Castillo Sanchez JM, Castillo A, Sayagu O, Moriche M.   Endothelial damage with cataract surgery techniques.  J Cataract Refract Surg 24:951-955 (1998). PubMed

Diaz-Valle D, Benitez Del Castillo Sanchez JM, Toledano N, Castillo A, Perez-Torregrosa V, Garcia-Sanchez J.  Endothelial morphological and functional evaluation after cataract surgery.  Eur J Ophthalmol 6:242-245 (1996). PubMed

Duench S, Sorbara L, Keir N, Simpson T, Jones L. Impact of silicone hydrogel lenses and solutions on corneal epithelial permeability. Optom Vis Sci. 90(6):546-56 (2013).PubMed

Dutt R, Lass J, Spurney R, Andersson H, Kochar H, Rodman H, Doershuk C. Corneal fluorophotometry in insulin-treated cystic fibrosis. Invest Ophthalmol Vis Sci 26(Suppl):154 (1985).

Dutt RM, Stocker EG, Wolff CH, Glavan I, Lass JH. A morphologic and fluorophotometric analysis of the corneal endothelium in long term extended wear soft contact lens wearers. CLAO Journal 15:121-123 (1989).

Egan CA, Hodge DO, McLaren JW, Bourne WM.  Effect of dorzolamide on corneal endothelial function in normal human eyes.  Invest Ophthalmol Vis Sci 39:23-29 (1998). PubMed

Fujihara T, Murakami T, Fujita H, Nakamura M, Nakata K. Improvement of corneal barrier function by the P2Y(2) agonist INS365 in a rat dry eye model. Invest Ophthalmol Vis Sci 42(1):96-100 (2001). PubMed

Fujitani K, Gadaria N, Lee KI, Barry B, Asbell P. Corneal permeability changes in dry eye disease: an observational study. BMC Ophthalmol. 16(1):53 (2016). PubMed

Gekka M, Miyata K, Nagai Y, Nemoto S, Sameshima T, Tanabe T, Maruoka S, Nakahara M, Kato S, Amano S. Corneal epithelial barrier function in diabetic patients. Cornea 23(1):35-7 (2004). PubMed

Gobbels M, Gross D.  [Clinical study of the effectiveness of a dexpanthenol containing artificial tears solution (Siccaprotect) in treatment of dry eyes]. [Article in German]  Klin Monatsbl Augenheilkd 209:84-88 (1996). PubMed

Gobbels M, Ohlhorst D, Spitznas M. Permeability in Long-Term Contact Lens Wearers With Deep Stromal Opacities – A Prospective Fluorophotometric Study. Contactologia 13:18- (1991).

Greiner JV, Glonek T, Lass JH, Tsubota K, Kenyon KR, Shimazaki J, Meneses P, Hirokawa K, Merchant TE, Hearn SL.    Ex vivo phosphorus magnetic resonance spectroscopy on eye bank corneas and corneal metabolic health.  Graefes Arch Clin Exp Ophthalmol 235:691-695 (1997). PubMed

Holliday JN, Buller CR, Bourne WM. Specular microscopy and fluorophotometry in the diagnosis of epithelial downgrowth after a sutureless cataract operation (L/E). Am J Ophthalmol 116:238- (1993). PubMed

Hull DS, Farkas S, Green K, Laughter L, Elijah RD, Bowman K. Radial keratotomy. Effect on cornea and aqueous humor physiology in the rabbit. Arch Ophthalmol 101:479-481 (1983).

Hughes L, Maurice DM. A fresh look at iontophoresis. Arch Ophthalmol 102:1825-1829 (1984). PubMed

Ichijima H, Yokoi N, Nishizawa A, Kinoshita S. Fluorophotometric assessment of rabbit corneal epithelial barrier function after rigid contact lens wear. Cornea 18(1):87-91 (1999). PubMed

Iselin KC, Bachmann LM, Thiel MA, Sanak F, Baenninger PB, Kaufmann C. A fluorophotometric comparison of anterior chamber riboflavin delivery via corneal application and fornix instillation. Arch Soc Esp Oftalmol (Engl Ed). 98(11):627-632 (2023). PubMed

Ishibashi T, Yokoi N, Kinoshita S. Comparison of the short-term effects on the human corneal surface of topical timolol maleate with and without benzalkonium chloride. J Glaucoma 12(6):486-90 (2003).PubMed

Ishibashi T, Yokoi N, Ohtsuki M, Mori K, Komuro A, Kinoshita S. Influence of latanoprost on the corneal epithelial barrier function in glaucoma patients. Ophthalmologica 216(5):351-4 (2002). PubMed

Ishiko S, Yoshida A, Mori F, Abiko T, Kitaya N, Konno S, Kato Y.  Corneal and lens autofluorescence in young insulin-dependent diabetic patients.  Ophthalmologica 212:301-305 (1998). PubMed

Joshi A, Maurice DM, Paugh JR. A new method for determining corneal epithelial barrier to fluorescein in humans. Invest Ophthalmol Vis Sci 37:1008-1016 (1996). PubMed

Kasianova NS, Musaev PI, Oganesian VA, Kasparov AA. Keratofluoropenetrometry in assessing treatment effectiveness in chronic edematous keratopathy. Vestn Oftalmol 6:31-34 (1981).

Katsuyama I, Arakawa T. A convenient rabbit model of ocular epithelium damage induced by osmotic dehydration. J Ocul Pharmacol Ther 19(3):281-9 (2003). PubMed

Khalil HA, van Best JA, de Keizer RJW. Fluorophotometric determination of the permeability of the cornea in Graves’ ophthalmopathy – Supp Title: Abstracts from the 183rd Congress… Int Ophthalmol 13:478 (1989).

Khalil HA, van Best JA, de Keizer RJW. The permeability of the corneal epithelium of Graves’ Ophthalmopathy as determined by fluorophotometry. Doc Ophthalmol 73:249 (1989). PubMed

Kim JY, Heo JH, Park SJ, Choi YS, Wee WR, Lee JH.  Changes in corneal epithelial barrier function after excimer laser photorefractive keratectomy.  J Cataract Refract Surg 24:1571-1574.  (1998). PubMed

Kinoshita S, Adachi W, Sotozono C, Nishida K, Yokoi N, Quantock AJ, Okubo K. Characteristics of the human ocular surface epithelium. Prog Retin Eye Res 20(5):639-73 (2001). Review. PubMed

Kinoshita S, Nishida K, Dota A, Inatomi T, Koizumi N, Elliott A, Lewis D, Quantock A, Fullwood N. Epithelial barrier function and ultrastructure of gelatinous drop-like corneal dystrophy. Cornea 19(4):551-5 (2000). PubMed

Kitaya N, Ishiko S, Mori F, Abiko T, Kagokawa H, Takeda M, Takamiya A, Yoshida A. Diurnal variation of corneal autofluorescence in normal and diabetic eyes. Eye 12 (Pt 6):934-7 (1998). PubMed

Kuppins E, Stolwijk T, van Best J, de Keizer R. Topical timolol, corneal epithelial permeability and autofluorescence in glaucoma by fluorophotometry. Graefes Arch Clin Exp Ophthalmol 232:215- (1994). PubMed

Laing RA, Fischbarg J, Chance B. Noninvasive measurements of pyridine nucleotide fluorescence from the cornea. Ophthalmology 19 (1980). PubMed

Lass JH, Dutt RM, Spurney RV, Stocker EG, Wolff CH, Glavan I. Morphologic and fluorophotometric analysis of the corneal endothelium in long-term hard and soft contact lens wearers. CLAO Journal 14:105-109 (1988). PubMed

Lass JH, Spurney RV, Dutt RM, Andersson H, Kochar H, Rodman HM, Stern RC, Doershuk, CF. A morphologic and fluorophotometric analysis of the corneal endothelium in type 1 diabetes mellitus and cystic fibrosis. Am J Ophthalmol 100:783-788 (1985). PubMed

Leong YY, Tong L. Barrier function in the ocular surface: from conventional paradigms to new opportunities. Ocul Surf 13(2):103-9 (2015). PubMed

Lin MC, French HM, Graham AD, Sanders TL. Effects of daily irrigation on corneal epithelial permeability and adverse events with silicone hydrogel contact lens continuous wear. Invest Ophthalmol Vis Sci 55(2):776-83 (2014). PubMed

Li WY, Hsiao C, Graham AD, Lin MC. Corneal epithelial permeability: ethnic differences between Asians and non-Asians. Cont Lens Anterior Eye 36(5):215-8 (2013). PubMed

Lin MC, Graham AD, Fusaro RE, Polse KA. Impact of rigid gas-permeable contact lens extended wear on corneal epithelial barrier function. Invest Ophthalmol Vis Sci 43(4):1019-24 (2002). PubMed

Lin MC, Graham AD, Polse KA, McNamara NA, Tieu TG. The effects of one-hour wear of high-Dk soft contact lenses on corneal pH and epithelial permeability. CLAO J 26(3):130-3 (2000). PubMed

Lin MC, Yeh TN, Graham AD, Truong T, Hsiao C, Wei G, Louie A. Ocular surface health during 30-day continuous wear: rigid gas-permeable versus silicone
hydrogel hyper-O2 transmitted contact lenses. Invest Ophthalmol Vis Sci 52(6):3530-8 (2011). PubMed

Linden C, Alm A.  Effect of consecutively applied fluorescein eye drops on corneal and aqueous concentrations of fluorescein.  Ophthalmic Res 29:57-60 (1997). PubMed

Lux A, Maier S, Dinslage S, Suverkrup R, Diestelhorst M. A comparative bioavailability study of three conventional eye drops versus a single lyophilisate. Br J Ophthalmol 87(4):436-40 (2003). PubMed

Maar N, Graebe A, Schild G, Stur M, Amon M. Influence of viscoelastic substances used in cataract surgery on corneal metabolism and endothelial morphology: comparison of Healon and Viscoat. J Cataract Refract Surg 27(11):1756-61 (2001). PubMed

Macdonald EA, Maurice DM. Loss of fluorescein across the conjunctiva. Exp Eye Res 53:427-430 (1991). PubMed

Marsh RJ, Maurice DM. The influence of non-ionic detergents and other surfactants on human corneal permeability. Exp Eye Res ll:43-48 (1971). PubMed

Masters BR, Falk S, Chance B. In vivo flavoprotein redox measurements of rabbit corneal normoxic-anoxic transitions. Curr Eye Res 1:623-627 (1981). PubMed

Masters BR, Riley MV, Fischbarg J, Chance B. Pyridine nucleotides of rabbit cornea with histotoxic anoxia: Chemical analysis, non-invasive fluorometry and physiological correlates. Exp Eye Res 36:1-9 (1983). PubMed

Masters BR. A noninvasive optical method to measure oxygen tension at the corneal epithelium. Curr Eye Res 10:725-727 (1985). PubMed

Masters BR. Noninvasive redox fluorometry: How light can be used to monitor alterations of corneal mitochondrial function. Curr Eye Res 3:23-26 (1984). PubMed

Maurice DM. The effects of the low blink rate in rabbits on topical drug penetration. J. Ocular Pharmacol 11:297-304 (1995).

Maurice DM, Brooks D. The permeability of the mouse cornea as a test for acute ocular toxicity. In Vitro Toxicology, 8:113-120 (1995).

Maurice DM, Ota Y. The kinetics of subconjuctival injections. Jpn J Ophthalmol 22:95-100 (1978).

Maurice DM, Polgar J. Diffusion across the sclera. Exp Eye Res 25:577-582 (1977). PubMed

Maurice DM, Srinivas SP. Fluorometric measurement of light absorption by the rabbit cornea. Exp Eye Res 58:409-413 (1994). PubMed

Maurice DM, Srinivas SP. Use of fluorometry in assessing the efficacy of cation-sensitive gel as an ophthalmic vehicle: comparison with scintigraphy. J Pharm Sci 81:615-619 (1992). PubMed

McCarey BE, Reaves TA.  Effect of tear lubricating solutions on in vivo corneal epithelial permeability.  Curr Eye Res 16:44-50 (1997). PubMed

McNamara NA, Chan JS, Han SC, Polse KA, McKenney CD.  Effects of hypoxia on corneal epithelial permeability.  Am J Ophthalmol 127:153-157 (1999). PubMed

McNamara NA, Brand RJ, Polse KA, Bourne WM.  Corneal function during normal and high serum glucose levels in diabetes.  Invest Ophthalmol Vis Sci 39:3-17 (1998). PubMed

McNamara NA, Fusaro RE, Brand RJ, Polse KA. Epithelial permeability reflects subclinical effects of contact lens wear. Br J Ophthalmol 82:376-81 (1998). PubMed

McNamara NA, Fusaro RE, Brand RJ, Polse KA, Srinivas SP.  Measurement of corneal epithelial permeability to fluorescein. A repeatability study.  Invest Ophthalmol Vis Sci 38:1830-1839 (1997). PubMed

McNamara NA, Polse KA, Bonanno JA. Fluorophotometry in contact lens research: the next step. Optom Vis Sci  75:316-322 (1998). PubMed

McNamara NA, Polse KA, Fukunaga SA, Maebori JS, Suzuki RM.  Soft lens extended wear affects epithelial barrier function.  Ophthalmology 105:2330-2335 (1998). PubMed

Minkowski JS, Bartels SP, Delori FC, Lee SR, Kenyon KR, Neufeld AH. Corneal endothelial function and structure following cryo-injury in the rabbit. Invest Ophthalmol Vis Sci 25:1416-1425 (1984). PubMed

Mishima S, Maurice DM. In vivo determination of the endothelial permeability to fluorescein (Japanese). Jap. J. Ophthalmol. Suppl. 75:152-159 (1971). PubMed

Miyata K, Amano S, Sawa M, Nishida T. A novel grading method for superficial punctate keratopathy magnitude and its correlation with corneal epithelial permeability. Arch Ophthalmol 121(11):1537-9 (2003).PubMed

Mochizuki H, Fukui M, Hatou S, Yamada M, Tsubota K. Evaluation of ocular surface glycocalyx using lectin-conjugated fluorescein. Clin Ophthalmol 4:925-30 (2010). PubMed

Muskens RP, van Best JA, Bleeker JC, Keunen JE. Corneal autofluorescence in choroidal melanoma or in choroidal naevus. Br J Ophthalmol 85(6):662-5 (2001). PubMed

Nagano T, Nakamura M, Nakata K, Yamaguchi T, Takase K, Okahara A, Ikuse T, Nishida T. Effects of substance P and IGF-1 in corneal epithelial barrier function and wound healing in a rat model of neurotrophic keratopathy. Invest Ophthalmol Vis Sci. 44(9):3810-5 (2003). PubMed

Nagataki S, Brubaker RF, Grotte DA The diffusion of fluorescein in the stroma of rabbit cornea. Exp Eye Res 36:765-771(1983). PubMed

Nagataki S, Shiraya K. Permeability of the corneal endothelium to fluorescein monoglucuronide in the rabbit eye. Invest Ophthalmol Vis Sci 26(Suppl):105 (1985).

Nakamura M, Kawahara M, Nakata K, Nishida T. Restoration of corneal epithelial barrier function and wound healing by substance P and IGF-1 in rats with capsaicin-induced neurotrophic keratopathy. Invest Ophthalmol Vis Sci 44(7):2937-40 (2003). PubMed

Niiya A, Yokoi N, Matsumoto Y, Komuro A, Ishibashi T, Tomii S, He J, Kinoshita S. Effect of beta-blocker eyedrops on corneal epithelial barrier function. Ophthalmologica 214(5):332-6 (2000). PubMed

Nuyts RMMA, Boot N, van Best JA, Edelhauser HF, Breebaart AC. Long term changes in human corneal endothelium following toxic endothelial cell destruction: specular microscopic; fluorophotometric Study. Br J Ophthalmol 80:15- (1996).

Nzekwe UE, Maurice DM. The effect of age on the penetration of fluorescein into the human eye. J Ocul Pharm 10:521-524 (1994).

Ohara K, Cole DF. Water flow and dextran penetration through the sclera in-vitro. Acta Soc Ophthalmol Jpn 85:1243-1247 (1981).

Ohrloff C, Rothe R, Spitznas M. Evaluation of endothelial cell function with anterior segment fluorophotometry in pseudophakic patients. J Cataract Refract Surg 13:531-533 (1987). PubMed

Ota Y, Mishima S, Maurice DM. Endothelial permeability of the living cornea to fluorescein. Invest Ophthalmol Vis Sci 12:945-949 (1974). PubMed

Paugh JR, Meadows DL, Abbay J. Optimization and characterization of an objective scanning fluorophotometer for ocular autofluorescence measurements. Invest Ophthalmol Vis Sci 32 (Suppl.):1068 (1991).

Paugh JR, Nguyen AL, Hall JQ Jr, Krall D, Webb JR, Ramsey AC, Meadows DL. A preliminary study of silicone hydrogel lens material and care solution bioincompatibilities. Cornea 30(7):772-9 (2011). PubMed

Phua JL, Hou A, Lui YS, Bose T, Chandy GK, Tong L, Venkatraman S, Huang Y. Topical Delivery of Senicapoc Nanoliposomal Formulation for Ocular Surface Treatments. Int J Mol Sci 19(10):2977 (2018). PubMed

Polunin GS, Kurenkov VV, Makarov IA, Polunina EG.  [Objective indices of corneal transparency and of fluorescein permeability through the cornea before and after photorefractive keratectomy.]  Vestn Oftalmol  114:19-21 (1998).  (Russian). PubMed

Polunin GS, Kourenkov VV, Polunina EG.  Corneal transparency and measurement of corneal permeability in excimer laser photorefractive keratectomy.  J Refract Surg 14(Suppl):S230-4 (1998).

Porta M, Townsend C, Clover GM, et al. Evidence for functional endothelial cell damage in early diabetic retinopathy. Diabetologia (West Germany) 20:597-601 (1981). PubMed

Ravalico G, Tognetto D, Palomba MA, Lovisato A, Baccara F.  Corneal endothelial function after extracapsular cataract extraction and phacoemulsification.  J Cataract Refract Surg 23:1000-1005 (1997). PubMed

Ravalico G, Tognetto D, Baccara F, Lovisato A.  Corneal endothelial protection by different viscoelastics during
phacoemulsification.  J Cataract Refract Surg 23:433-439 (1997). PubMed

Rice SW, Bourne WM, Brubaker RF. Absence of an effect of topical dexamethasone on endothelial permeability and flow of aqueous humor. Invest Ophthalmol Vis Sci 24:1307-1311 (1983). PubMed

Rogova NA, Badalova EIU, Krupko LA. Scanning photometry in the dynamics of experiment keratitis. Oftalmol ZH 36:431-433 (1981). PubMed

Sawa M, Araie M, Tanishima T. Permeability of the corneal endothelium to fluorescein. A follow-up of keratoplasty cases. Jpn J Ophthalmol 26:326-337 (1982).

Schultz RO, Peters MA, Sobocinski K, Nassif K, Schultz KJ. Diabetic corneal neuropathy. Tr Am Ophth Soc 81:107-124 (1983). PubMed

Shimazaki J, Shimmura S, Mochizuki K, Tsubota K. Morphology and barrier function of the corneal epithelium after penetrating keratoplasty: association with original diseases, tear function, and suture removal. Cornea 18(5):559-64 (1999). PubMed

Shimazaki J, Yang HY, Tsubota K.  Amniotic membrane transplantation for ocular surface reconstruction in patients with chemical and thermal burns.  Ophthalmology 104:2068-2076 (1997). PubMed

Spitznas M, Ohrloff C, Koch F. Part 2: Chapter 24, Corneal fluorophotometry, indication of epithelial and endothelial functions. Ophthalmology Today, p. 159.

Spurney R, Dutt R, Murphy B, Stocker E, Glovan I, Lass J. Hard contact lens wear and the corneal endothelium: a fluorophotometric analysis. Invest Ophthalmol Vis Sci 27(Suppl):98 (1986).

Srinivas SP, Maurice DM. A microfluorometer for measuring diffusion of fluorophores across the cornea, IEEE Transactions on Biomedical Engineering, 39:1283-1291 (1992). PubMed

Steinfeld A, Lux A, Maier S, Suverkrup R, Diestelhorst M. Bioavailability of fluorescein from a new drug delivery system in human eyes. Br J Ophthalmol 88(1):48-53 (2004). PubMed

Stolwijk TR, van Best JA. Corneal auto fluorescence by fluorophotometry as indicator of diabetic retinopathy. Invest Ophthalmol Vis Sci 32 (Suppl.):1067 (1991).

Stolwijk TR, van Best JA, Boot JP, Oosterhuis JA. Corneal autofluorescence in diabetic and penetrating keratoplasty patients as measured by fluorophotometry. Exp Eye Res 51:403-409 (1990). PubMed

Stur M, Grabner G. (The corneal endothelium – morphology, function and clinical importance.) Wien Klin Wonchenschr (Austria) 95:274-276 (1983). PubMed

Szymanski A, Janiec S, Rzendkowski M. [The function of corneal endothelium after penetrating keratoplasty as measured with fluorophotometry] Klin Oczna 101(1):37-40 (1999). Polish. PubMed

Tian B, Sabanay I, Peterson JA, Hubbard WC, Geiger B, Kaufman PL. Acute effects of H-7 on ciliary epithelium and corneal endothelium in monkey eyes. Curr Eye Res 22(2):109-20 (2001). PubMed

Tognetto D, Cecchini P, Sanguinetti G, Pedio M, Ravalico G. Comparative evaluation of corneal epithelial permeability after the use of diclofenac 0.1% and flurbiprofen 0.03% after phacoemulsification. J Cataract Refract Surg 27(9):1392-6 (2001). PubMed

Tokuda K, Hirowatari T, Kamei Y, Miyazaki Y, Matsubara M. [Availability of TPD ophthalmic solution (mixture of Mydrin-P solution, Neosynesin Kowa solution, and Diclod solution) in regard to the corneal barrier function–clinical evaluation for vitrectomy in patients with diabetic retinopathy] Nippon Ganka Gakkai Zasshi 106(10):648-53 (2002). Japanese. PubMed

Tseng SH, Chen FK.  Morphological and fluorophotometric analysis of the corneal endothelium after radial keratotomy.  Cornea 17:471-475 (1998). PubMed

Tsuru T, Araie M, Matsubara M, Komuro Y, Tanishima T. Endothelial wound healing of monkey cornea. The fluorophotometric and specular microscopic studies. Acta Soc Ophthalmol Jpn 87:738-750 (1983). PubMed

van Best JA, Diestelhorst M, Leite E, Fantaguzzi S, Schalnus R. Corneal endothelial permeability and aqueous humor flow using a standard protocol. Graefes Arch Clin Exp Ophthalmol 233:582-91 (1995). PubMed

van Schaik HJ, Coppens J, van den Berg TJ, van Best JA. Autofluorescence distribution along the corneal axis in diabetic and healthy humans. Exp Eye Res 69(5):505-10 (1999). PubMed

Waltman SR, Buerk K, Foster CS. Effects of ophthalmic ointments on intraocular penetration of topical fluorescein in rabbits and man. Am J Ophthalmol 78:262-264 (1974). PubMed

Waltman SR, Kaufman HE. In vivo studies of human corneal endothelial permeability. Am J Ophthalmol 70:45-47 (1970). PubMed

Waltman SR, Patrowicz TC. Effects of hydroxypropylmethyl cellulose and polyvinyl alcohol on intraocular penetration of topical fluorescein in man. Invest Ophthalmol Vis Sci 9:966-970 (1970). PubMed

Waring GO, Bourne WM, Edelhauser HF, Kenyon KR. The corneal endothelium. Normal and pathologic structure and function. Ophthalmology 89:531-590 (1982). PubMed

Yeh TN, Green HM, Zhou Y, Pitts J, Kitamata-Wong B, Lee S, Wang SL, Lin MC. Short-term effects of overnight orthokeratology on corneal epithelial permeability and biomechanical properties. Invest Ophthalmol Vis Sci. Jun 6;54(6):3902-11 (2013). PubMed

Yokoi K, Yokoi N, Kinoshita S.  Impairment of ocular surface epithelium barrier function in patients with atopic dermatitis.  Br J Ophthalmol 82:797-800 (1998). PubMed



For more information please send email brucei@ocumetrics.com

or call Bruce Ishimoto, OcuMetrics (650) 960-3955.