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6.1.1 Devices, techniques (69)

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Display all abstracts in classification 6.1.1 Devices, techniques

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61682 Comparison of intraocular pressure measurement with Scheimpflug-based noncontact tonometer with and without hydrogel contact lenses
Kumar M
Indian Journal of Ophthalmology 2015; 63: 323-326
61582 Correlation of Serial Scleral and Corneal Pneumatonometry
Kuo DS
Ophthalmology 2015; 122: 1771-1776
61162 Efficacy of a contact lens sensor for monitoring 24-h intraocular pressure related patterns
Mansouri K
PLoS ONE 2015; 10: e0125530
61501 A comparison of Icare PRO and Tono-Pen XL tonometers in anesthetized children
McKee EC
Journal of AAPOS 2015; 19: 332-337
61400 Fluctuations of the Intraocular Pressure in Pseudoexfoliation Syndrome and Normal Eyes Measured by a Contact Lens Sensor
Tojo N
Journal of Glaucoma 2016; 25: e463-e468
61608 Preliminary study on implantable inductive-type sensor for continuous monitoring of intraocular pressure
Kim YW
Clinical and Experimental Ophthalmology 2015; 43: 830-837
61434 Novel Parameter of Corneal Biomechanics That Differentiate Normals From Glaucoma
Lee R
Journal of Glaucoma 2016; 25: e603-e609
61799 Repeatability and reproducibility of applanation resonance tonometry: a cross-sectional study
Ottobelli L
BMC Ophthalmology 2015; 15: 36
61797 Open source software for the analysis of corneal deformation parameters on the images from the Corvis tonometer
Koprowski R
Biomedical engineering online 2015; 14: 31
61603 Effect of glaucoma medications on 24-h intraocular pressure-related patterns using a contact lens sensor
Mansouri K
Clinical and Experimental Ophthalmology 2015; 43: 787-795
61386 Estimation of 24-Hour Intraocular Pressure Peak Timing and Variation Using a Contact Lens Sensor
Liu JH
PLoS ONE 2015; 10: e0129529
61062 Comparability of Icare Pro Rebound Tonometer with Goldmann Applanation and Noncontact Tonometer in a Wide Range of Intraocular Pressure and Central Corneal Thickness
Tamçelik N
Ophthalmic Research 2015; 54: 18-25
61481 Noninvasive intraocular pressure monitoring: current insights
de Smedt S
Clinical Ophthalmology 2015; 9: 1385-1392
61716 Icare ONE Home Tonometry in Children With and Without Known Glaucoma
Gandhi NG
Journal of Glaucoma 2016; 25: e66-e69
61528 IOP telemetry in the nonhuman primate
Downs JC
Experimental Eye Research 2015; 141: 91-98
61533 Comparison of intraocular pressure measurements obtained by rebound, noncontact, and Goldmann applanation tonometry in children
Feng CS
American Journal of Ophthalmology 2015; 160: 937-943.e1
61434 Novel Parameter of Corneal Biomechanics That Differentiate Normals From Glaucoma
Chang RT
Journal of Glaucoma 2016; 25: e603-e609
61062 Comparability of Icare Pro Rebound Tonometer with Goldmann Applanation and Noncontact Tonometer in a Wide Range of Intraocular Pressure and Central Corneal Thickness
Atalay E
Ophthalmic Research 2015; 54: 18-25
61603 Effect of glaucoma medications on 24-h intraocular pressure-related patterns using a contact lens sensor
Medeiros FA
Clinical and Experimental Ophthalmology 2015; 43: 787-795
61716 Icare ONE Home Tonometry in Children With and Without Known Glaucoma
Jones SK
Journal of Glaucoma 2016; 25: e66-e69
61386 Estimation of 24-Hour Intraocular Pressure Peak Timing and Variation Using a Contact Lens Sensor
Mansouri K
PLoS ONE 2015; 10: e0129529
61799 Repeatability and reproducibility of applanation resonance tonometry: a cross-sectional study
Fogagnolo P
BMC Ophthalmology 2015; 15: 36
61682 Comparison of intraocular pressure measurement with Scheimpflug-based noncontact tonometer with and without hydrogel contact lenses
Shetty R
Indian Journal of Ophthalmology 2015; 63: 323-326
61582 Correlation of Serial Scleral and Corneal Pneumatonometry
Ou Y
Ophthalmology 2015; 122: 1771-1776
61533 Comparison of intraocular pressure measurements obtained by rebound, noncontact, and Goldmann applanation tonometry in children
Jin KW
American Journal of Ophthalmology 2015; 160: 937-943.e1

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