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Items: 1 to 20 of 108

1.

Contact lens material characteristics associated with hydrogel lens dehydration.

Ramamoorthy P, Sinnott LT, Nichols JJ.

Ophthalmic Physiol Opt. 2010 Mar;30(2):160-6. doi: 10.1111/j.1475-1313.2009.00705.x.

PMID:
20444120
2.

Tear film, contact lens, and patient-related factors associated with contact lens-related dry eye.

Nichols JJ, Sinnott LT.

Invest Ophthalmol Vis Sci. 2006 Apr;47(4):1319-28.

PMID:
16565363
3.

Refractive index and equilibrium water content of conventional and silicone hydrogel contact lenses.

González-Méijome JM, Lira M, López-Alemany A, Almeida JB, Parafita MA, Refojo MF.

Ophthalmic Physiol Opt. 2006 Jan;26(1):57-64.

PMID:
16390483
4.

The effect of lens wear on refractive index of conventional hydrogel and silicone-hydrogel contact lenses: a comparative study.

Lira M, Santos L, Azeredo J, Yebra-Pimentel E, Real Oliveira ME.

Cont Lens Anterior Eye. 2008 Apr;31(2):89-94. Epub 2007 Oct 25.

PMID:
17964212
5.

An apparent pH-induced effect on extended wear hydrogel lens water content.

Lattimore MR Jr.

Optom Vis Sci. 1996 Nov;73(11):689-94.

PMID:
8950750
6.

In vitro evaluation of the dehydration characteristics of silicone hydrogel and conventional hydrogel contact lens materials.

Jones L, May C, Nazar L, Simpson T.

Cont Lens Anterior Eye. 2002 Sep;25(3):147-56.

PMID:
16303487
7.

Recovery of the water content of hydrogel contact lenses after use.

Cabrera JV, Velasco MJ.

Ophthalmic Physiol Opt. 2005 Sep;25(5):452-7.

PMID:
16101953
8.

Changes in water content of high plus hydrogel lenses worn on an extended wear basis in a geriatric aphakic population.

Patel S, Illahi W, Davies A.

Cont Lens Anterior Eye. 2005 Sep;28(3):127-34. Epub 2005 Jul 5.

PMID:
16318843
9.

Dehydration of hydrogel lenses during overnight wear.

Brennan NA, Lowe R, Efron N, Ungerer JL, Carney LG.

Am J Optom Physiol Opt. 1987 Jul;64(7):534-9.

PMID:
3631211
10.

Equivalences between refractive index and equilibrium water content of conventional and silicone hydrogel soft contact lenses from automated and manual refractometry.

González-Méijome JM, López-Alemany A, Lira M, Almeida JB, Oliveira ME, Parafita MA.

J Biomed Mater Res B Appl Biomater. 2007 Jan;80(1):184-91.

PMID:
16680698
11.

Characteristics of the pre-lens tear film during hydrogel contact lens wear.

Young G, Efron N.

Ophthalmic Physiol Opt. 1991 Jan;11(1):53-8.

PMID:
2034456
12.

Hydrogel contact lens dehydration in controlled environmental conditions.

Morgan PB, Efron N, Morgan SL, Little SA.

Eye Contact Lens. 2004 Apr;30(2):99-102.

PMID:
15260358
13.
14.

Differential adherence of Acanthamoeba to contact lenses: effects of material characteristics.

Seal DV, Bennett ES, McFadyen AK, Todd E, Tomlinson A.

Optom Vis Sci. 1995 Jan;72(1):23-8.

PMID:
7731652
15.

Dehydration, lens movement and dryness ratings of hydrogel contact lenses.

Pritchard N, Fonn D.

Ophthalmic Physiol Opt. 1995 Jul;15(4):281-6.

PMID:
7667020
16.

Influence of tear film and contact lens osmolality on ocular comfort in contact lens wear.

Stahl U, Willcox MD, Naduvilath T, Stapleton F.

Optom Vis Sci. 2009 Jul;86(7):857-67. doi: 10.1097/OPX.0b013e3181ae027b.

PMID:
19525883
17.

Definitions for hydration changes of hydrogel lenses.

Brennan NA, Efron N, Truong VT, Watkins RD.

Ophthalmic Physiol Opt. 1986;6(3):333-8.

PMID:
3822475
18.

Proton NMR relaxation in hydrogel contact lenses: correlation with in vivo lens dehydration data.

Larsen DW, Huff JW, Holden BA.

Curr Eye Res. 1990 Jul;9(7):697-706.

PMID:
2209067
19.

A comparison of tear volume (by tear meniscus height and phenol red thread test) and tear fluid osmolality measures in non-lens wearers and in contact lens wearers.

Miller WL, Doughty MJ, Narayanan S, Leach NE, Tran A, Gaume AL, Bergmanson JP.

Eye Contact Lens. 2004 Jul;30(3):132-7.

PMID:
15499232
20.

Water properties of soft contact lens materials.

Tranoudis I, Efron N.

Cont Lens Anterior Eye. 2004 Dec;27(4):193-208.

PMID:
16303542

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