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      다국어 초록 (Multilingual Abstract)

      Purpose: To compare computerized stereoscopic optic disc photography, plane optic disc photography, and OCT in ONH analysis and predictability of glaucomatous field defects. Methods: A total of 99 eyes of 50 patients were studied from December 2004 to February 2005. Complete ophthalmic examinations were performed which included computerized stereoscopic optic disc photography, plane optic disc photography, OCT, and a visual field test. Results: The three methods analyzed in this study were largely correlated with each other. However, the horizontal cup-disc ratio using OCT differed from the other methods. The most valuable data was vertical CDR estimation using computerized stereoscopic optic disc photography. The sensitivity and specificity of computerized stereoscopic optic disc photography on a glaucomatous field defect using multivariate analysis were 80% and 100%, respectively. The hit ratios of computerized stereoscopic optic disc photography, plane optic disc photography, and OCT were 90.9, 81.6 and 60.7, respectively. Conclusions: ONH analysis using computerized stereoscopic optic disc photography may be a benefit in the diagnosis and follow-up of glaucoma patients. It is thought that easy accessibility and convenient storage of computerized photography will be useful for the detection of glaucomatous visual field defects.
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      Purpose: To compare computerized stereoscopic optic disc photography, plane optic disc photography, and OCT in ONH analysis and predictability of glaucomatous field defects. Methods: A total of 99 eyes of 50 patients were studied from December 2004 to...

      Purpose: To compare computerized stereoscopic optic disc photography, plane optic disc photography, and OCT in ONH analysis and predictability of glaucomatous field defects. Methods: A total of 99 eyes of 50 patients were studied from December 2004 to February 2005. Complete ophthalmic examinations were performed which included computerized stereoscopic optic disc photography, plane optic disc photography, OCT, and a visual field test. Results: The three methods analyzed in this study were largely correlated with each other. However, the horizontal cup-disc ratio using OCT differed from the other methods. The most valuable data was vertical CDR estimation using computerized stereoscopic optic disc photography. The sensitivity and specificity of computerized stereoscopic optic disc photography on a glaucomatous field defect using multivariate analysis were 80% and 100%, respectively. The hit ratios of computerized stereoscopic optic disc photography, plane optic disc photography, and OCT were 90.9, 81.6 and 60.7, respectively. Conclusions: ONH analysis using computerized stereoscopic optic disc photography may be a benefit in the diagnosis and follow-up of glaucoma patients. It is thought that easy accessibility and convenient storage of computerized photography will be useful for the detection of glaucomatous visual field defects.

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      참고문헌 (Reference)

      1 심재옥, "한국인 녹내장 환자의 진단을 위한 빛간섭단층촬영을 이용한 시신경유두 분석" 대한안과학회 45 (45): 1885-1892, 2004

      2 Airaksinen PJ, "Visual field and retinal nerve fiber layer comparisons in glaucoma" 103 : 205-207, 1985

      3 Pederson JE, "The mode of progressive disc cupping in ocular hypertesion and glaucoma" 98 : 490-495, 1980

      4 Drance SM, "The correlation of functional and structural measurements in glaucoma patients and normal subjects" 102 : 612-616, 1986

      5 Spry PG, "The Bristol Shared Care Glaucoma Study: Reliability of community optometric and hospital eye service test measures" 83 : 707-712, 1999

      6 Bland JM, "Statistical methods for assessing agreement between two methods of clinical measurement" 1 : 307-310, 1986

      7 Quigley HA, "Retinal ganglion cell atrophy correlated with automated perimetry in human eyes with glaucoma" 107 : 453-464, 1989

      8 Zeyen TG, "Progression of disc and field damage in early glaucoma" 111 : 62-65, 1993

      9 Jonas JB, "Predictive factors of the optic nerve head for development or progression of glaumatous visual field loss" 45 : 2613-2618, 2004

      10 Choi YR, "Optic disc measurements with stereophotograph in normal eyes" 40 : 3437-3445, 1999

      1 심재옥, "한국인 녹내장 환자의 진단을 위한 빛간섭단층촬영을 이용한 시신경유두 분석" 대한안과학회 45 (45): 1885-1892, 2004

      2 Airaksinen PJ, "Visual field and retinal nerve fiber layer comparisons in glaucoma" 103 : 205-207, 1985

      3 Pederson JE, "The mode of progressive disc cupping in ocular hypertesion and glaucoma" 98 : 490-495, 1980

      4 Drance SM, "The correlation of functional and structural measurements in glaucoma patients and normal subjects" 102 : 612-616, 1986

      5 Spry PG, "The Bristol Shared Care Glaucoma Study: Reliability of community optometric and hospital eye service test measures" 83 : 707-712, 1999

      6 Bland JM, "Statistical methods for assessing agreement between two methods of clinical measurement" 1 : 307-310, 1986

      7 Quigley HA, "Retinal ganglion cell atrophy correlated with automated perimetry in human eyes with glaucoma" 107 : 453-464, 1989

      8 Zeyen TG, "Progression of disc and field damage in early glaucoma" 111 : 62-65, 1993

      9 Jonas JB, "Predictive factors of the optic nerve head for development or progression of glaumatous visual field loss" 45 : 2613-2618, 2004

      10 Choi YR, "Optic disc measurements with stereophotograph in normal eyes" 40 : 3437-3445, 1999

      11 Funk J, "Neuroretinal rim area and visual field in glaucoma" 226 : 431-434, 1988

      12 Altangerel U, "Knowledge of chronology of optic disc stereophotographs influences the determination of glaucomatous change" 12 : 40-43, 2005

      13 Varma R, "Expert agreement in evaluating the optic disc for glaucoma" 99 : 215-221, 1992

      14 Odberg T, "Early diagnosis of glaucoma. The value of successive stereophoto-graphy of the optic disc" 63 : 257-263, 1985

      15 Caprioli J, "Correlation of structure and function in glaucoma. Quantitative measurement of disc and field" 95 : 723-727, 1988

      16 O’Connor DJ, "Comparisons of methods to detect glaucomatous optic nerve damage" 100 : 1498-1503, 1993

      17 Jonas JB, "Comparison of measurements of neuroretinal rim area between confocal laser scanning tomography and planimetry of photographs" 82 : 362-366, 1998

      18 Sommer A, "Clinically detectable nerve fiber atrophy precedes the onset of glaucomatous field loss" 109 : 77-83, 1991

      19 Caprioli J, "Clinical evaluation of the optic nerve in glaucoma" 92 : 589-641, 1994

      20 Quigley H, "An evaluation of optic disc and nerve fiber layer examinations in monitoring progression of early glaucoma damage" 99 : 19-28, 1992

      21 Sung VC, "Agreement in assessing optic discs with a digital stereoscopic optic camera (Discam) and Heidelberg retina tomograph" 86 : 196-202, 2002

      22 Jayasundera T, "Agreement between stereoscopic photographs, clinical assessment, Heidelberg retina tomograph and digital stereoscopic optic disc camera in estimating vertical cup : disc ratio" 33 : 259-263, 2005

      23 Abrams LS, "Agreement among optometrists, ophthalmologists, and residents in evaluating the optic disc for glaucoma" 101 : 1662-1667, 1994

      24 Shuttleworth GN, "A new digital optic disc stereo camera: Intraobserver and interobserver repeatability of optic disc measurements" 84 : 403-407, 2000

      25 Parkin B, "A comparison of stereoscopic and monoscopic evaluation of optic disc topography using a digital optic disc stereo camera" 85 : 1347-1351, 2001

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      학술지 이력

      학술지 이력
      연월일 이력구분 이력상세 등재구분
      2023 평가예정 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
      2020-01-01 평가 등재학술지 유지 (해외등재 학술지 평가) KCI등재
      2017-01-01 평가 등재학술지 유지 (계속평가) KCI등재
      2013-01-01 평가 등재 1차 FAIL (등재유지) KCI등재
      2010-01-01 평가 등재학술지 유지 (등재유지) KCI등재
      2007-01-01 평가 등재학술지 선정 (등재후보2차) KCI등재
      2006-01-01 평가 등재후보 1차 PASS (등재후보1차) KCI등재후보
      2005-01-01 평가 등재후보학술지 유지 (등재후보1차) KCI등재후보
      2003-01-01 평가 등재후보학술지 선정 (신규평가) KCI등재후보
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      기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
      2016 0.22 0.22 0.22
      KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
      0.23 0.23 0.366 0.02
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