Glass Enamel & Ophtalmic Optics, Volume. 52, Issue 7, 7(2024)
Discussion on the Control of Myopia Development by Orthokeratology Lens Based on Peripheral Defocus of Retina
[1] [1] BAIRD P N,SAW S M,LANCA C, et al. Myopia[[J]. Nature Reviews Disease Primers, 2020, 6(1): 99.
[2] [2] Q1Z Y,CHEN J,HE XG. Epidemiology of high myopia among children and adolescents in China[[J]. Zhonghua Yan Ke Za Zhi Chinese Journal of Ophthalmology, 2023,59(2):138-145.
[4] [4] CHO P.CHEUNG S W, EDWARDS M. The longitudinal orthokeratology research in children(LORIC) in Hong Kong: A pilot study on refractive changes and myopic control[[J]. Current Eye Research, 2005, 30(1): 71-80.
[7] [7] HIRAOKA T,KAKITA T,OKAMOTO F, et al. Longe-term effect of overnight orthokeratology on axial length elongation in childhood myopia: A5-year follow-up study[[J]. Investigative Ophthalmology &. Visual Science, 2012, 53(7): 3913-3919.
[8] [8] AWASTHIS, PANT B P,LANGAAS T. Refractive error prevalence among school children in Dadedhura district of Nepal[[J]Kathmandu University Medical Journal(KUMJ), 2020,18(70):149-154.
[12] [12] SINGH SE,WILDSOET C F, ROORDA A J. Optical aberrations of guinea pig eyes[[J]. Investigative Ophthalmology &. Visual Science,2020,61(10):39.
[14] [14] LIU Y, WILDSOET C. The efect of two-zone concentric bifocal spectacle lenses on refractive error development and eye growth in young chicks[[J]. Investigative Ophthalmology &. Visual Science, 2011, 52(2): 1078-1086.
[15] [15] BOWREY H E, ZENG G,TSE D Y, et al. The effect of spectade lenses containing peripheral defocus on refractive eror and horizontal eye shape in the guinea pig[[J]. Investigative Ophthalmology &. Visual Science, 2017, 58(5): 2705-2714.
[16] [16] BENAVENTE-PEREZ A,NOUR A, TROILO D. Axial eye growth and refractive error development can be modified by exposing the peripheral retina to relative myopic or hyperopic defocus[[J]. Investigative Ophthalmology &. Visual Science, 2014,55(10):6765-6773.
[17] [17] LI X,HUANG YY,ZHANG J L, et al. Treatment zone decentration promotes retinal reshaping in Chinese myopic chldren wearing orthokeratology lenses[[J]. Ophthalmic &. Physiological Optics: the Journal of the British Colege of Ophthalmic Opticians(Optometrists),2022,42(5):1124-1132.
[20] [20] WAN K.CHEUNG S W. WOLFFSOHNJS, et al. Role of corneal biomechanical propertiesin predicting of sped of myopic progression in children wearing orthokeratology lenses or single-vision spectacles[[J]. BMJ Open Ophthalmology, 2018, 3(1): e000204.
[21] [21] KIM WK,KIM B J,RYUI H, et al. Corneal epithelial and stromal thickness changes in myopic orthokeratology and their relationship with refractive change[[J]. PLOS ONE, 2018, 13(9): e0203652.
[25] [25] CHENZ,XUE F,ZHOUJQ, et al. Prediction of orthokeratology lens decentration with corneal elevation[[J]. Optometry &. Vision Science: Official Publication of the American Academy of Optometry, 2017, 94(9): 903-907.
[26] [26] JIANG J,LIAN LL, WANG F F, et al. Comparison of toric and spherical orthokeratology lenses in patients with astigmatism[[J]. Journal of Ophthalmology, 2019,2019:4275269.
[27] [27] LIZ Y,CUI DM,LONG W, et al. Predictive role of paracentral corneal toricity using elevation data for treatment zone deoentration during orthokeratology[[J]. Current Eye Research, 2018, 43(9): 1083-1089.
[34] [34] CHENM F,LIU XT,XIE Z, et al. The efect of corneal refractive power area changes on myopia progresion during orthokeratology]. Journal of Ophthalmology, 2022,2022:5530162.
[35] [35] CHU M Q. ZHAO YY, HU P K. et al. Is Orthokeratology treatment zone decentration elfective and safe in controlling myopi progression?[[J]. Eye &. Contact Lens: Science &. Clinical Practice, 2023, 49(4): 147-151.
[40] [40] JONAS J B.ANG M,CHO P. et al. IMI prevention of myopia and its progresion[[J]. Investigative Ophthalmology & Visual Science2021,62(5):1-6.
[44] [44] PAUNEJ,FONTS S,RODRIGUEZ L, et al. The role of back optic zone diameter in myopia control with orthokeratology lenses[[J]. Journal of Clinical Medicine, 2021, 10(2): 336.
[45] [45] VINCENT S J, TAN Q, NG A L. K, et al. Higher order aberrations and axial elongation in combined 0.01% atropine witl orthokeratology for myopia control[[J]. Ophthalmic &. Physiological Optics: the Journal of the British College of Ophthalmic Optician(Optometrists),2020,40(6):728-737.
[54] [54] DOLGIN E. The myopia boom[[J]. Nature, 2015, 519(7543): 276-278.
[55] [55] CHO P,TAN Q. Myopia and orthokeratology for myopia control[J]. Clinical and Experimental Optometry, 2019, 102(4):364-377.
[56] [56] NAKAMURA Y, HIEDA O, YOKOTA I, et al. Comparison of myopia progression between children wearing three types othokeratology lenses and children wearing single-vision spectacles[[J]. Japanese Journal of Ophthalmology, 2021, 65(5):632-643.
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MA Xiaoqi, TONG Yuting, ZHOU Yuehua. Discussion on the Control of Myopia Development by Orthokeratology Lens Based on Peripheral Defocus of Retina[J]. Glass Enamel & Ophtalmic Optics, 2024, 52(7): 7
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Received: Feb. 22, 2024
Accepted: --
Published Online: Aug. 23, 2024
The Author Email: ZHOU Yuehua (yh0220@yahoo.com)