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Node | Authors | Title | Year | Categories |
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1 | Cho et al. [7] | The longitudinal orthokeratology research in children (LORIC) in Hong Kong: A pilot study on refractive changes and myopic control | 2005 | Myopia control |
2 | Swarbrick et al. [8] | Corneal response to orthokeratology | 1998 | Safety and efficacy |
3 | Cho and Cheung [9] | Retardation of myopia in orthokeratology (ROMIO) study: A 2-year randomized clinical trial | 2012 | Myopia control |
4 | Swarbrick [10] | Orthokeratology review and update | 2006 | Safety and efficacy |
5 | Santodomingo-Rubido et al [11] | Myopia control with orthokeratology contact lenses in Spain: refractive and biometric changes | 2012 | Myopia control |
6 | Queirós et al [12] | Peripheral refraction in myopic patients after orthokeratology | 2010 | Myopia control |
7 | Watt and Swarbrick [13] | Microbial keratitis in overnight orthokeratology: review of the first 50 cases | 2005 | Safety and efficacy |
8 | Watt and Swarbrick [14] | Trends in microbial keratitis associated with orthokeratology | 2007 | Safety and efficacy |
9 | Charm and Cho [15] | High myopia-partial reduction orthok: a 2-year randomized study | 2013 | Myopia control |
10 | Chen et al. [16] | Myopia control using toric orthokeratology (to-see study) | 2013 | Myopia control |
11 | Boost and Cho [17] | Microbial flora of tears of orthokeratology patients, and microbial contamination of contact lenses and contact lens accessories | 2005 | Safety and efficacy |
12 | Cheung et al. [18] | Asymmetrical increase in axial length in the two eyes of a monocular orthokeratology patient | 2004 | Myopia control |
13 | Cho et al. [19] | Practice of orthokeratology by a group of contact lens practitioners in Hong Kong: Part I. General overview | 2002 | Myopia control |
14 | Nieto-Bona et al. [20] | Short-term effects of overnight orthokeratology on corneal cell morphology and corneal thickness | 2011 | Safety and efficacy |
15 | Nieto-Bona et al. [21] | Long-term changes in corneal morphology induced by overnight orthokeratology | 2011 | Safety and efficacy |
16 | Chen et al. [22] | A pilot study on the corneal biomechanical changes in short-term orthokeratology | 2009 | Safety and efficacy |
17 | Cheung and Cho [23] | Subjective and objective assessments of the effect of orthokeratology-a cross-sectional study | 2004 | Safety and efficacy |
18 | Cho et al. [24] | An assessment of consecutively presenting orthokeratology patients in a Hong Kong based private practice | 2003 | Safety and efficacy |
19 | González-Méijome et al. [25] | Pilot study on the influence of corneal biomechanical properties over the short term in response to corneal refractive therapy for myopia | 2008 | Safety and efficacy |
20 | Jayakumar and Swarbrick [26] | The effect of age on short-term orthokeratology | 2005 | Safety and efficacy |
21 | González-Pérez et al. [27] | Tear film inflammatory mediators during continuous wear of contact lenses and corneal refractive therapy | 2012 | Safety and efficacy |
22 | Lum et al. [28] | Mapping the corneal sub-basal nerve plexus in orthokeratology lens wear using in vivo laser scanning confocal microscopy. | 2012 | Safety and efficacy |
23 | Choy et al. [29] | Effect of one overnight wear of orthokeratology lenses on tear composition | 2004 | Safety and efficacy |
24 | Queirós et al. [30] | Effect of pupil size on corneal aberrations before and after standard laser in situ keratomileusis, custom laser in situ keratomileusis, and corneal refractive therapy | 2010 | Safety and efficacy |
25 | Cho et al. [31] | Non-compliance and microbial contamination in orthokeratology | 2009 | Safety and efficacy |
26 | Queirós et al. [32] | Quality of life of myopic subjects with different methods of visual correction using the NEI RQL-42 questionnaire | 2012 | Safety and efficacy |
27 | Chen et al. [33] | Posterior corneal curvature changes and recovery after 6 months of overnight orthokeratology treatment | 2010 | Safety and efficacy |
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