2Johnson CA,Adams AJ,Casson EJ,et al. Blue-on-yellow perimetry can predict the development of glaucomatous visual field loss. Arch Opht halmol, 1993,111: 645-650.
3Johnson CA,Adams AJ,Casson EJ,et al. Progression of early glaucomatous visual field loss as detected by blue-on-yellow and standrad white-on-white automated perimetry. Arch Ophthalmol, 1993,111 : 651-656.
4Sample PA, Taylor JDN, Martinez GA, et al. Short-wavelength color visual fields in glaucoma suspects at risk. Am J Ophthalmol, 1993,115: 225-233.
5Sample PA ,Johnson CA,Haegerstrom-Portnoy G,et al. Optimum parameters for short-wavelength automated perimetry. J Glaucona, 1996,5: 375-383.
6Sample PA,Boynton RM,Weinreb RN. Isolating the color vision loss in primary open angle glaucoma. Am J Ophthalmol, 1988, 106:686-691.
7Zrenner E,Gouras P, Characteristics of the blue sensitive cone mechanism in primate retinal ganglion cells. Vision Res, 1981,21:1605-1609.
8Teesalu P,Airaksinen J,Tuulonen A. Blue-on-yellow visual field and retinal nerve fiber layer in ocular hypertension and glaucoma. Ophthalmol, 1998,105: 2077-2081.
9Sample PA,Martinez GA,Weinreb RN. Short-wavelenght automated perimetry without lens density testing. Am J Ophthalmol, 1994,118:632-641.
10Wild JM,Moss ID. Baseline alterations in blue-on-yellow normal perimetric sensitivity. Graefes Arch Clin Exp Ophthalmol, 1996,234:141-149.
二级参考文献21
1[1]Johnson CA, Adams AJ, Casson EJ, et al: Blue-on-yellowperimetry can predict the development of glaucomatous visual field loss. Arch Ophthalmol 1993; 111:645 - 650.
2[3]Sample PA, Taylor JDN, Martinez GA, et al:Short-wavelength color visual fields in glaucoma suspects at risk. Am J Ophthalmol 1993; 115:225 - 233.
3[4]Jhonson CA, Adams AJ, Casson EJ, et al: Progression of early glaucomatous visual field loss is detected by blue-on-yellow and standard white-on-white automate perimetry. Arch Ophthalmol 1993; 111:651 - 656.
4[5]Sample PA, Martinez GA, Weinreb RN: Short-wavelength automated perimetry without lens density testing. Am J Ophthalmol 1994; 118:632 - 641.
5[6]Wild JM, Moss ID: Baseline alterations in blue-on-yellow normal perimetric sensitivity. Graefes Arch Clin Exp Ophthalmol 1996; 234:141 - 149.
6[7]Kwon YH, Park HJ, Jap A, et al: Test-retest variability of blue-on-yellow perimetry is greater than white-on-white perimetry in normal subjects. Am J Ophthalmol 1998; 126:29 - 36.
7Johnson CA, Adams A J, Casson E J, et al. Blue-on-yellow perimetry can predict the development of glaucomatous visual field loss. Arch Ophthalmol,1993;111:645-650.
8Johnson CA, Adams AJ, Casson EJ, et al. Progression of early glaucomatous visual field loss as detected by blue-on-yellow and standard white-on-white automated perimetry. Arch Ophthalmol, 1993;111:651-656.
9Sample PA, Weinreb RN. Color perimetry for assessment of primary open-angle glaucoma. Invest Ophthalmol Vis Sci, 1990;31:1869-1875.
10Johnson CA, Brandt JD,Khong AM, et al. Short-wavelength automated perimetry in low-,medium-, and high-risk ocular hypertensive eyes. Arch Ophthalmol, 1995;113:70-76.
6Hee MR,Izatt JA,Swanson EA,et al.Optical coherence tomography of the human retina.Arch Ophthalmol 1995;113(3):325-332.
7Soliman MA,Van Den Berg TJ,Ismaeil AA,et al.Retinal nerve fiber layer analysis:relationship between optical coherence tomography and red-free photography.Am J Ophthalmol 2002;133(2):187-195.
8Nouri-Mahdaviu K,Hoffman D,Tannenbaum DP,et al.Identifying early glaucoma with optical coherence tomography.Am J Ophthalmol 2004;137(2):228-235.
9Kanamori A,Nakamura M,Escano MF,et al.Evaluation of the glaucomatous damage on retinal nerve fiber layer thickness measured by opeical coherence tomography.Am J Ophthalmol 2003;135(4):513-520.
10Liu X,Ling Y,Luo R,et al.Optical coherence tomography in measuring retinal nerve fiber layer thickness in normal subjects and patients with open angle glaucoma.Chin Med J (Engl) 2001;114(5):524-529.