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    Estimation of Intraocular Lens Power Calculation after Myopic Corneal Refractive Surgery: Using Corneal Height in Anterior Segment Optical Coherence Tomography

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    https://www.riss.kr/link?id=A103853006

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    Purpose: To investigate the feasibility of estimating effective lens position (ELP) and calculating intraocular lens power using corneal height (CH), as measured using anterior segment optical coherence tomography (ASOCT), in patients who have undergone corneal refractive surgery.
    Methods: This study included 23 patients (30 eyes) who have undergone myopic corneal refractive surgery and subsequent successful cataract surgery. The CH was measured with AS-OCT, and the measured ELP (ELPm) was calculated. Intraocular lens power, which could achieve actual emmetropia (Preal), was determined with medical records. Estimated ELP (ELPest) was back-calculated using Preal, axial length, and keratometric value through the SRK/T formula. After searching the best-fit regression formula between ELPm and ELPest, converted ELP and intraocular lens power (ELPconv, Pconv) were obtained and then compared to ELPest and Preal, respectively. The proportion of eyes within a defined error was investigated.
    Results: Mean CH, ELPest, and ELPm were 3.71 ± 0.23, 7.74 ± 1.09, 5.78 ± 0.26 mm, respectively. The ELPm and ELPest were linearly correlated (ELPest = 1.841 × ELPm – 2.018, p = 0.023, R = 0.410) and ELPconv and Pconv agreed well with ELPest and Preal, respectively. Eyes within ±0.5, ±1.0, ±1.5, and ±2.0 diopters of the calculated Pconv, were 23.3%, 66.6%, 83.3%, and 100.0%, respectively.
    Conclusions: Intraocular lens power calculation using CH measured with AS-OCT shows comparable accuracy to several conventional methods in eyes following corneal refractive surgery.
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    Purpose: To investigate the feasibility of estimating effective lens position (ELP) and calculating intraocular lens power using corneal height (CH), as measured using anterior segment optical coherence tomography (ASOCT), in patients who have undergo...

    Purpose: To investigate the feasibility of estimating effective lens position (ELP) and calculating intraocular lens power using corneal height (CH), as measured using anterior segment optical coherence tomography (ASOCT), in patients who have undergone corneal refractive surgery.
    Methods: This study included 23 patients (30 eyes) who have undergone myopic corneal refractive surgery and subsequent successful cataract surgery. The CH was measured with AS-OCT, and the measured ELP (ELPm) was calculated. Intraocular lens power, which could achieve actual emmetropia (Preal), was determined with medical records. Estimated ELP (ELPest) was back-calculated using Preal, axial length, and keratometric value through the SRK/T formula. After searching the best-fit regression formula between ELPm and ELPest, converted ELP and intraocular lens power (ELPconv, Pconv) were obtained and then compared to ELPest and Preal, respectively. The proportion of eyes within a defined error was investigated.
    Results: Mean CH, ELPest, and ELPm were 3.71 ± 0.23, 7.74 ± 1.09, 5.78 ± 0.26 mm, respectively. The ELPm and ELPest were linearly correlated (ELPest = 1.841 × ELPm – 2.018, p = 0.023, R = 0.410) and ELPconv and Pconv agreed well with ELPest and Preal, respectively. Eyes within ±0.5, ±1.0, ±1.5, and ±2.0 diopters of the calculated Pconv, were 23.3%, 66.6%, 83.3%, and 100.0%, respectively.
    Conclusions: Intraocular lens power calculation using CH measured with AS-OCT shows comparable accuracy to several conventional methods in eyes following corneal refractive surgery.

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    참고문헌 (Reference)

    1 Doors M, "Value of optical coherence tomography for anterior segment surgery" 36 : 1213-1229, 2010

    2 Hoffer KJ, "The Hoffer Q formula: a comparison of theoretic and regression formulas" 19 : 700-712, 1993

    3 Masket S, "Simple regression formula for intraocular lens power adjustment in eyes requiring cataract surgery after excimer laser photoablation" 32 : 430-434, 2006

    4 Olsen T, "Prediction of the effective postoperative (intraocular lens) anterior chamber depth" 32 : 419-424, 2006

    5 Tomlinson A, "Ocular dimensions in the heredity of angle-closure glaucoma" 57 : 475-486, 1973

    6 Ferrara G, "New formula to calculate corneal power after refractive surgery" 20 : 465-471, 2004

    7 McCarthy M, "Intraocular lens power calculations after myopic laser refractive surgery: a comparison of methods in 173 eyes" 118 : 940-944, 2011

    8 Olsen T, "Intraocular lens power calculation with an improved anterior chamber depth prediction algorithm" 21 : 313-319, 1995

    9 Seitz B, "Intraocular lens power calculation in eyes after corneal refractive surgery" 16 : 349-361, 2000

    10 Hoffer KJ, "Intraocular lens power calculation for eyes after refractive keratotomy" 11 : 490-493, 1995

    1 Doors M, "Value of optical coherence tomography for anterior segment surgery" 36 : 1213-1229, 2010

    2 Hoffer KJ, "The Hoffer Q formula: a comparison of theoretic and regression formulas" 19 : 700-712, 1993

    3 Masket S, "Simple regression formula for intraocular lens power adjustment in eyes requiring cataract surgery after excimer laser photoablation" 32 : 430-434, 2006

    4 Olsen T, "Prediction of the effective postoperative (intraocular lens) anterior chamber depth" 32 : 419-424, 2006

    5 Tomlinson A, "Ocular dimensions in the heredity of angle-closure glaucoma" 57 : 475-486, 1973

    6 Ferrara G, "New formula to calculate corneal power after refractive surgery" 20 : 465-471, 2004

    7 McCarthy M, "Intraocular lens power calculations after myopic laser refractive surgery: a comparison of methods in 173 eyes" 118 : 940-944, 2011

    8 Olsen T, "Intraocular lens power calculation with an improved anterior chamber depth prediction algorithm" 21 : 313-319, 1995

    9 Seitz B, "Intraocular lens power calculation in eyes after corneal refractive surgery" 16 : 349-361, 2000

    10 Hoffer KJ, "Intraocular lens power calculation for eyes after refractive keratotomy" 11 : 490-493, 1995

    11 Jarade EF, "Intraocular lens power calculation following LASIK: determination of the new effective index of refraction" 22 : 75-80, 2006

    12 Tang M, "Intraocular lens power calculation after previous myopic laser vision correction based on corneal power measured by Fourier-domain optical coherence tomography" 38 : 589-594, 2012

    13 Savini G, "Intraocular lens power calculation after myopic refractive surgery: theoretical comparison of different methods" 113 : 1271-1282, 2006

    14 Feiz V, "Intraocular lens power calculation after laser in situ keratomileusis for myopia and hyperopia: a standardized approach" 20 : 792-797, 2001

    15 Latkany RA, "Intraocular lens calculations after refractive surgery" 31 : 562-570, 2005

    16 Haigis W, "Intraocular lens calculation after refractive surgery for myopia: Haigis-L formula" 34 : 1658-1663, 2008

    17 Speicher L, "Intra-ocular lens calculation status after corneal refractive surgery" 12 : 17-29, 2001

    18 Aristodemou P, "Formula choice: Hoffer Q, Holladay 1, or SRK/T and refractive outcomes in 8108 eyes after cataract surgery with biometry by partial coherence interferometry" 37 : 63-71, 2011

    19 Ho JD, "Estimation of the effective lens position using a rotating Scheimpflug camera" 34 : 2119-2127, 2008

    20 Nishimura R, "Effect of age on changes in anterior chamber depth and volume after laser in situ keratomileusis" 35 : 1868-1872, 2009

    21 Retzlaff JA, "Development of the SRK/T intraocular lens implant power calculation formula" 16 : 333-340, 1990

    22 Haigis W, "Corneal power after refractive surgery for myopia:contact lens method" 29 : 1397-1411, 2003

    23 Holladay JT, "Consultations in refractive surgery" 5 : 202-203, 1989

    24 Wang L, "Comparison of intraocular lens power calculation methods in eyes that have undergone LASIK" 111 : 1825-1831, 2004

    25 Yang R, "Comparison of intraocular lens power calculation methods after myopic laser refractive surgery without previous refractive surgery data" 39 : 1327-1335, 2013

    26 Doors M, "Comparison of central corneal thickness and anterior chamber depth measurements using three imaging technologies in normal eyes and after phakic intraocular lens implantation" 247 : 1139-1146, 2009

    27 Olsen T., "Calculation of intraocular lens power: a review" 85 : 472-485, 2007

    28 Arce CG, "Calculation of intraocular lens power using Orbscan II quantitative area topography after corneal refractive surgery" 25 : 1061-1074, 2009

    29 Jeong-Ho Yi, "Anterior Chamber Measurements by Pentacam and AS-OCT in Eyes With Normal Open Angles" 대한안과학회 22 (22): 242-245, 2008

    30 Holladay JT, "A three-part system for refining intraocular lens power calculations" 14 : 17-24, 1988

    31 Rosa N, "A new method of calculating intraocular lens power after photorefractive keratectomy" 18 : 720-724, 2002

    32 Camellin M, "A new formula for intraocular lens power calculation after refractive corneal surgery" 22 : 187-199, 2006

    33 Saiki M, "A new central-peripheral corneal curvature method for intraocular lens power calculation after excimer laser refractive surgery" 91 : 133-139, 2013

    34 Sonego-Krone S, "A direct method to measure the power of the central cornea after myopic laser in situ keratomileusis" 122 : 159-166, 2004

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