Corneal oxygen uptake: A review of polarographic techniques, applications, and variables.
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[1] G. Foulks,et al. Prolonging contact lens wear and making contact lens wear safer. , 2006, American journal of ophthalmology.
[2] Noel A Brennan,et al. Beyond Flux: Total Corneal Oxygen Consumption as an Index of Corneal Oxygenation During Contact Lens Wear , 2005, Optometry and vision science : official publication of the American Academy of Optometry.
[3] N. Brennan. Corneal oxygenation during contact lens wear: comparison of diffusion and EOP‐based flux models , 2005, Clinical & experimental optometry.
[4] H. Marsden,et al. COMPARISON OF CHEMICAL AND NON-CHEMICAL DISINFECTION SYSTEMS ON CORNEAL STAINING AND PHENOL RED THREAD TEST IN HYDROGEL CONTACT LENS WEARERS.: Poster #142 , 2001 .
[5] R. Hill,et al. (CL-104)THE EFFECTS OF RIGID GAS PERMEABLE CONTACT LENS THICKNESS SEQUENCING ON THE MEASUREMENT OF OXYGEN SHORTFALL OF THE HUMAN CORNEA: Poster # 61 , 2000 .
[6] R. Hill,et al. (CL-163)HUMAN CORNEA: ITS RAPID RESPONSE TO ANOXIA—THE FIRST 540 SECONDS: Poster # 59 , 2000 .
[7] R. Hill,et al. Oxygen: how well is the closed eye being served? , 2000, Optometry.
[8] P. Morgan,et al. Hydrogel contact lens ageing. , 2000, The CLAO journal : official publication of the Contact Lens Association of Ophthalmologists, Inc.
[9] J. Bonanno,et al. Re-evaluation of the oxygen diffusion model for predicting minimum contact lens Dk/t values needed to avoid corneal anoxia. , 1999, Optometry and vision science : official publication of the American Academy of Optometry.
[10] T. Brunstetter,et al. What is the oxygen environment under an encapsulated segment bifocal RGP contact lens? , 1999, Journal of the American Optometric Association.
[11] P. Morgan,et al. Hydrogel contact lens dehydration and oxygen transmissibility. , 1999, The CLAO journal : official publication of the Contact Lens Association of Ophthalmologists, Inc.
[12] A. Graham,et al. Tear mixing under a soft contact lens: effects of lens diameter. , 1999, American journal of ophthalmology.
[13] Bradley J. Smith,et al. Effects of rigid contact lens truncation on oxygen access to the central cornea under static and dynamic conditions , 1998 .
[14] L. Jones,et al. Effects of Rigid Contact Lens Prism Ballasting on Oxygen Access to the Cornea under Static and Dynamic Conditions , 1998, Optometry and vision science : official publication of the American Academy of Optometry.
[15] R. Hill,et al. Corneal responses to lens transmissibility. , 1997, Journal of the American Optometric Association.
[16] N. Efron,et al. Distribution of Oxygen Across the Surface of the Human Cornea during Soft Contact Lens Wear , 1996, Optometry and vision science : official publication of the American Academy of Optometry.
[17] R. Hill,et al. Contact lens transmissibility: effects on delivery of oxygen to the cornea. , 1996, Optometry and vision science : official publication of the American Academy of Optometry.
[18] L. Carney,et al. Using Corneal Oxygen Demand to Optimize Rigid Contact Lens Design , 1993, Optometry and vision science : official publication of the American Academy of Optometry.
[19] L. Carney,et al. Rigid Contact Lens Design Equivalencies of Overall Diameter and Axial Edge Lift: Individual Variations , 1993, Optometry and vision science : official publication of the American Academy of Optometry.
[20] R. Hill,et al. Effects of prism ballasting of rigid contact lenses on human corneal oxygen-uptake rates. Part II: Closed-eye conditions , 1993 .
[21] L. Carney,et al. Influence of Lens Design on the Tear Pump Efficiency Associated with Plus-Power Rigid Contact Lenses: A Comparison of Single Cut, Lenticular, and Minus-Carrier Designs , 1993, Optometry and vision science : official publication of the American Academy of Optometry.
[22] J. Paugh. Equivalent Oxygen Percentage as a Function of Hydration in Hydrogel Lenses: An in Vivo Study , 1992, Optometry and vision science : official publication of the American Academy of Optometry.
[23] L. Carney,et al. Influence of Power Changes in Single Cut Rigid Contact Lenses on Tear Pump Efficiency , 1992, Optometry and vision science : official publication of the American Academy of Optometry.
[24] L. Carney,et al. Influence of Rigid Contact Lens Base Curve Radius on Tear Pump Efficiency , 1992, Optometry and vision science : official publication of the American Academy of Optometry.
[25] L. Carney,et al. Effects of Rigid Contact Lens Edge Lift Changes on Tear Pump Efficiency , 1991, Optometry and vision science : official publication of the American Academy of Optometry.
[26] L. Carney,et al. Responses to oxygen deprivation: variations among human corneas , 1991, Graefe's Archive for Clinical and Experimental Ophthalmology.
[27] L. Carney,et al. Rigid Lens Tear Pump Efficiency: Effects of Overall Diameter/Base Curve Combinations , 1991, Optometry and vision science : official publication of the American Academy of Optometry.
[28] L. Carney,et al. Rigid Contact Lens Design: Effects of Overall Diameter Changes on Tear Pump Efficiency , 1991, Optometry and vision science : official publication of the American Academy of Optometry.
[29] L. Carney,et al. Influence of Rigid Contact Lens Overall and Optic Zone Diameters on Tear Pump Efficiency , 1990, Optometry and vision science : official publication of the American Academy of Optometry.
[30] N. Brennan,et al. Corneal pathophysiology with contact lens wear. , 1990, Survey of ophthalmology.
[31] L. Carney,et al. Influence of Palpebral Aperture Height on Tear Pump Efficiency , 1990, Optometry and vision science : official publication of the American Academy of Optometry.
[32] L. Carney,et al. Time course of corneal oxygen uptake during contact lens wear. , 1988, The CLAO journal : official publication of the Contact Lens Association of Ophthalmologists, Inc.
[33] R. Hill,et al. Aerobic responses of the cornea to isopropyl alcohol, measured in vivo , 1987, Acta ophthalmologica.
[34] R. Hill,et al. Closed‐lid factors influencing human corneal oxygen demand , 1986, Acta ophthalmologica.
[35] N Efron,et al. Effects of long-term extended contact lens wear on the human cornea. , 1985, Investigative ophthalmology & visual science.
[36] B. Holden,et al. The oxygen tension and temperature of the superior palpebral conjunctiva , 1985, Acta ophthalmologica.
[37] G. Wilson,et al. Polarography: an oxygen survey correlating oxygen transmissibility to "EOP" values. , 1984, Investigative ophthalmology & visual science.
[38] G. Wilson,et al. Equivalent oxygen percentage (EOP) technique: a standard calibration curve. , 1984, American journal of optometry and physiological optics.
[39] G. Wilson,et al. Oxygen tension measurements: a comparison of methodologies. , 1984, American journal of optometry and physiological optics.
[40] J. Schoessler,et al. Human Corneal Epithelial Oxygen Demand—Population Characteristics , 1984, American journal of optometry and physiological optics.
[41] B. Weissman. Oxygen consumption of whole human corneas. , 1984, American journal of optometry and physiological optics.
[42] J. Larke,et al. Apparent Respiration Rate of the Human Corneal Epithelium with Tetracaine HCI and Benoxinate HCI , 1983, American journal of optometry and physiological optics.
[43] L. Carney,et al. Effect of blinking on the level of oxygen beneath hard and soft gas-permeable contact lenses. , 1983, Journal of the American Optometric Association.
[44] B. Holden,et al. Corneal swelling response to contact lenses worn under extended wear conditions. , 1983, Investigative ophthalmology & visual science.
[45] J. Čižmárik,et al. In vitro cytotoxicity in rabbit corneal cells of two new local anesthetics--pentacaine and heptacaine. , 1981, Die Pharmazie.
[46] L. Carney,et al. Models of Oxygen Performance for the Static, Dynamic and Closed-lid Wear of Hydrogel Contact Lenses , 1981 .
[47] C. Wigham,et al. Apparent Human Corneal Oxygen Uptake Rate , 1981, American journal of optometry and physiological optics.
[48] R. Kleinstein,et al. In vivo aqueous humor oxygen tension--as estimated from measurements on bare stroma. , 1981, Investigative ophthalmology & visual science.
[49] J. Larke,et al. Apparent Oxygen Uptake Rate of the Human Cornea In Vivo Following Soft Contact Lens Removal , 1981, American journal of optometry and physiological optics.
[50] J. Larke,et al. Alterations in apparent corneal oxygen uptake rate induced as a result of changes in the fit of hydrogel contact lenses. , 1981, Journal of the American Optometric Association.
[51] R. Hill,et al. Oxygen and water. , 1981, Journal of the American Optometric Association.
[52] M. Ruben,et al. Clinical aspects of the measurement of oxygen flux into the cornea. , 1981, The British journal of ophthalmology.
[53] R. Mandell,et al. Tear pumping and edema with soft contact lenses. , 1980, Investigative ophthalmology & visual science.
[54] C. Wigham,et al. Oxygen sensors for clinical use , 1980 .
[55] K A Polse,et al. Tear flow under hydrogel contact lenses. , 1979, Investigative ophthalmology & visual science.
[56] I. Fatt. Measurement of Oxygen Flux into the Cornea by Pressing a Sensor onto a Soft Contact Lens on the Eye , 1978, American journal of optometry and physiological optics.
[57] Irving Fatt,et al. Polarographic Oxygen Sensors , 1976 .
[58] I. Fatt,et al. Oxygen Tension Uder a Soft or Hard, Gas‐Permeable Contact Lens in the Presence of Tear Pumping* , 1976, American journal of optometry and physiological optics.
[59] I. Fatt,et al. Oxygen tension distributions in the cornea: a re-examination. , 1974, Experimental eye research.
[60] R. Hill,et al. Corneal anesthetics and epithelial oxygen flux. , 1972, Archives of ophthalmology.
[61] R. D. Freeman. Oxygen consumption by the component layers of the cornea , 1972, The Journal of physiology.
[62] I. Fatt,et al. ESTIMATION OF THE IN VIVO OXYGEN CONSUMPTION RATE OF THE HUMAN CORNEAL EPITHELIUM* , 1972, American journal of optometry and archives of American Academy of Optometry.
[63] I. Fatt,et al. ESTIMATION OF OXYGEN TENSION UNDER A CONTACT LENS* , 1971, American journal of optometry and archives of American Academy of Optometry.
[64] R. Hill,et al. Tear pumps: reservoir oxygen measured in situ. , 1969, Journal of the American Optometric Association.
[65] R. Hill,et al. EPITHELIAL EDEMA: RESPIRATORY CHARACTERISTICS OF THE LESION* , 1968, American journal of optometry and archives of American Academy of Optometry.
[66] R. Hill,et al. Oxygen Flux across the Environmental Interface of Teleost Cornea , 1967, Nature.
[67] R. Hill. RESPIRATORY PROFILES OF THE CORNEAL EPITHELIUM: 1. CONTROL PROFILES AND EFFECTS OF THE NON-APERTURE LENS , 1966 .
[68] R. Hill. Relative effects of static reservoir volumes on corneal respiration. , 1966, American journal of optometry and archives of American Academy of Optometry.
[69] Hill Rm. Oxygen uptake of the cornea following contact lens removal. , 1965 .
[70] R. Hill,et al. OXYGEN DEPRIVATION OF THE CORNEA BY CONTACT LENSES AND LID CLOSURE. , 1964, American journal of optometry and archives of American Academy of Optometry.
[71] R. Hill,et al. OXYGEN MEASUREMENTS UNDER A CONTACT LENS. , 1964, American journal of optometry and archives of American Academy of Optometry.
[72] R. Hill,et al. Oxygen Uptake from a Reservoir of Limited Volume by the Human Cornea in vivo , 1963, Science.
[73] N. Efron,et al. CHAPTER 15 – Contact Lens Complications , 2007 .
[74] R. Hill,et al. Human cornea: Oxygen uptake immediately following graded deprivation , 2005, Graefe's Archive for Clinical and Experimental Ophthalmology.
[75] R. Hill,et al. Human corneal oxygen demand: the closed-eye interval , 2005, Graefe's Archive for Clinical and Experimental Ophthalmology.
[76] R. Hill,et al. Human cornea: Superior and central oxygen demands , 2005, Graefe's Archive for Clinical and Experimental Ophthalmology.
[77] Bradley J. Smith. The effect of center thickness and material permeability on the hypoxic stress induced by rigid gas permeable and hydrogel contact lenses , 1996 .
[78] I. Fatt,et al. New physiological paradigms to assess the effect of lens oxygen transmissibility on corneal health. , 1996, The CLAO journal : official publication of the Contact Lens Association of Ophthalmologists, Inc.
[79] N. Efron,et al. Corneal oxygen consumption and hypoxia , 1994 .
[80] B. Fink. Quantifying the effects of contact lens prescription parameters on human corneal oxygen uptake , 1987 .
[81] W. Benjamin. Corneal physiology under the closed eyelid of humans , 1982 .
[82] B A Weissman,et al. Diffusion of oxygen in human corneas in vivo. , 1981, Investigative ophthalmology & visual science.