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      스펙트럼영역과 시간영역 빛간섭단층촬영기로 측정한 망막신경섬유층 두께 비교

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      https://www.riss.kr/link?id=A100524144

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      다국어 초록 (Multilingual Abstract)

      Purpose: To compare retinal nerve fiber layer (RNFL) thickness measured by time domain (Stratus) and spectral domain (3D) optical coherence tomography (OCT). Methods: Sixty-nine normal subjects and 92 glaucoma patients were included in the present study. Peripapillary RNFL thickness was measured with Stratus fast RNFL scan and 3D optic disc cube scan on the same day. The relationship between RNFL thickness measurements of the two OCTs were evaluated using a Pearson’s correlation analysis. A Bland-Altman plot was used for the comparison of Stratus-OCT and 3D-OCT. Results: In all subjects, average, superior, and inferior quadrant RNFL thicknesses measured by Stratus-OCT were thicker than those measured by 3D-OCT. In contrast, temporal and nasal quadrant RNFL thicknesses measured by 3D-OCT were thicker than those measured by Stratus-OCT. Although there were absolute value differences in RNFL thicknesses, high correlation was observed between Stratus-OCT and 3D-OCT (average: r = 0.897, temporal quadrant: r = 0.728, superior quadrant: r = 0.811, nasal quadrant: r = 0.678, and inferior quadrant: r = 0.905). Bland-Altman plots showed that Stratus-OCT values were greater than 3D-OCT values with relatively high RNFL thickness and the opposite with low RNFL thickness. Conclusions: For thicker RNFL, Stratus-OCT measurements tend to be greater than 3D-OCT, while for thinner RNFL, 3D-OCT measurements tend to be greater than Stratus-OCT. This difference must be taken into account if comparing measurements made with a Stratus-OCT to the measurements of a 3D-OCT. J Korean Ophthalmol Soc 2012;53(1):103-110
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      Purpose: To compare retinal nerve fiber layer (RNFL) thickness measured by time domain (Stratus) and spectral domain (3D) optical coherence tomography (OCT). Methods: Sixty-nine normal subjects and 92 glaucoma patients were included in the present stu...

      Purpose: To compare retinal nerve fiber layer (RNFL) thickness measured by time domain (Stratus) and spectral domain (3D) optical coherence tomography (OCT). Methods: Sixty-nine normal subjects and 92 glaucoma patients were included in the present study. Peripapillary RNFL thickness was measured with Stratus fast RNFL scan and 3D optic disc cube scan on the same day. The relationship between RNFL thickness measurements of the two OCTs were evaluated using a Pearson’s correlation analysis. A Bland-Altman plot was used for the comparison of Stratus-OCT and 3D-OCT. Results: In all subjects, average, superior, and inferior quadrant RNFL thicknesses measured by Stratus-OCT were thicker than those measured by 3D-OCT. In contrast, temporal and nasal quadrant RNFL thicknesses measured by 3D-OCT were thicker than those measured by Stratus-OCT. Although there were absolute value differences in RNFL thicknesses, high correlation was observed between Stratus-OCT and 3D-OCT (average: r = 0.897, temporal quadrant: r = 0.728, superior quadrant: r = 0.811, nasal quadrant: r = 0.678, and inferior quadrant: r = 0.905). Bland-Altman plots showed that Stratus-OCT values were greater than 3D-OCT values with relatively high RNFL thickness and the opposite with low RNFL thickness. Conclusions: For thicker RNFL, Stratus-OCT measurements tend to be greater than 3D-OCT, while for thinner RNFL, 3D-OCT measurements tend to be greater than Stratus-OCT. This difference must be taken into account if comparing measurements made with a Stratus-OCT to the measurements of a 3D-OCT. J Korean Ophthalmol Soc 2012;53(1):103-110

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      참고문헌 (Reference)

      1 김부기, "시간영역 빛간섭단층촬영기와 스펙트럼영역 빛간섭단층촬영기로 측정한 망막신경섬유층 두께 비교" 대한안과학회 50 (50): 1539-1547, 2009

      2 송유미, "광간섭단층촬영기를 이용한 정상안과 초기 녹내장안의 구별" 대한안과학회 48 (48): 1675-1685, 2007

      3 Kotera Y, "Three-dimensional imaging of macular inner structures in glaucoma by using spectral-domain optical coherence tomography" 52 : 1412-1421, 2011

      4 Inoue R, "Three-dimensional high-speed optical coherence tomography imaging of lamina cribrosa in glaucoma" 116 : 214-222, 2009

      5 Landis JR, "The measurement of observer agreement for categorical data" 33 : 159-174, 1977

      6 Budenz DL, "Reproducibility of retinal nerve fiber thickness measurements using the Stratus OCT in normal and glaucomatous eyes" 46 : 2440-2443, 2005

      7 Budenz DL, "Reproducibility of peripapillary retinal nerve fiber thickness measurements with Stratus OCT in glaucomatous eyes" 115 : 661-666, 2008

      8 Schuman JS, "Reproducibility of nerve fiber layer thickness measurements using optical coherence tomography" 103 : 1889-1898, 1996

      9 Menke MN, "Reproducibility of nerve fiber layer thickness measurements using 3D fourier-domain OCT" 49 : 5386-5391, 2008

      10 Blumenthal EZ, "Reproducibility of nerve fiber layer thickness measurements by use of optical coherence tomography" 107 : 2278-2282, 2000

      1 김부기, "시간영역 빛간섭단층촬영기와 스펙트럼영역 빛간섭단층촬영기로 측정한 망막신경섬유층 두께 비교" 대한안과학회 50 (50): 1539-1547, 2009

      2 송유미, "광간섭단층촬영기를 이용한 정상안과 초기 녹내장안의 구별" 대한안과학회 48 (48): 1675-1685, 2007

      3 Kotera Y, "Three-dimensional imaging of macular inner structures in glaucoma by using spectral-domain optical coherence tomography" 52 : 1412-1421, 2011

      4 Inoue R, "Three-dimensional high-speed optical coherence tomography imaging of lamina cribrosa in glaucoma" 116 : 214-222, 2009

      5 Landis JR, "The measurement of observer agreement for categorical data" 33 : 159-174, 1977

      6 Budenz DL, "Reproducibility of retinal nerve fiber thickness measurements using the Stratus OCT in normal and glaucomatous eyes" 46 : 2440-2443, 2005

      7 Budenz DL, "Reproducibility of peripapillary retinal nerve fiber thickness measurements with Stratus OCT in glaucomatous eyes" 115 : 661-666, 2008

      8 Schuman JS, "Reproducibility of nerve fiber layer thickness measurements using optical coherence tomography" 103 : 1889-1898, 1996

      9 Menke MN, "Reproducibility of nerve fiber layer thickness measurements using 3D fourier-domain OCT" 49 : 5386-5391, 2008

      10 Blumenthal EZ, "Reproducibility of nerve fiber layer thickness measurements by use of optical coherence tomography" 107 : 2278-2282, 2000

      11 Gonzalez-Garcıa AO, "Reproducibility of RTVue retinal nerve fiber layer thickness and optic disc measurements and agreement with Stratus optical coherence tomography measurements" 147 : 1067-1074, 2009

      12 Legarreta JE, "Macular thickness measurements in normal eyes using spectral domain optical coherence tomography" 39 : 543-549, 2008

      13 Leung CKS, "Evaluation of scanning resolution on retinal nerve fiber layer measurement using optical coherence tomography in normal and glaucomatous eyes" 13 : 479-485, 2004

      14 Vizzeri G, "Effect of improper scan alignment on retinal nerve fiber layer thickness measurements using Stratus optical coherence tomograph" 17 : 341-349, 2008

      15 Cho JW, "Detection of glaucoma by spectral domain scanning laser ophthalmoscopy/optical coherence tomography (SD-SLO/OCT) and time domain optical coherence tomography" 20 : 15-20, 2011

      16 Knight OJ, "Comparison of retinal nerve fiber layer measurements using time domain and spectral domain optical coherent tomography" 116 : 1271-1277, 2009

      17 Sung KR, "Comparison of Retinal Nerve Fiber Layer Thickness Measured by Cirrus HD and Stratus Optical Coherence Tomography" ELSEVIER SCIENCE INC 116 (116): 1264-1270, 200903

      18 Hood DC, "Blood vessel contributions to retinal nerve fiber layer thickness profiles measured with optical coherence tomography" 17 : 519-528, 2008

      19 Knighton RW, "An optical model of the human retinal nerve fiber layer: implications of directional reflectance for variability of clinical measurements" 9 : 56-62, 2000

      20 Ghadiali Q, "An analysis of normal variations in retinal nerve fiber layer thickness profiles measured with optical coherence tomography" 17 : 333-340, 2008

      21 Vizzeri G, "Agreement between spectral domain and time-domain OCT for measuring RNFL thickness" 93 : 775-781, 2009

      22 Hood DC, "A comparison of retinal nerve fiber layer (RNFL) thickness obtained with frequency and time domain optical coherence tomography (OCT)" 17 : 3997-4003, 2009

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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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      학술지 인용정보

      학술지 인용정보
      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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