6 Diagnostic Capability of Optical Coherence Tomography …
161
82. Q. Chen, T. Leng, L. Zheng, L. Kutzscher, J. Ma et al., Automated drusen segmentation and
quantification in SD-OCT images. Med. Image Anal. 17(8), 1058–1072 (2013)
83. M.A. Mayer, J. Hornegger, C.Y. Mardin, R.P. Tornow, Retinal nerve fiber layer segmentation
on FD-OCT scans of normal subjects and glaucoma patients. Biomed. Opt. Express 1(5),
1358–1383 (2010)
84. D. Cabrera DeBuc, A review of algorithms for segmentation of retinal image data using optical
coherence tomography, in Image Segmentation, ed. by P.-G. Ho, InTech (2011). Available
from: http://www.intechopen.com/books/image-segmentation/a-review-of-algorithms-for-se
gmentation-of-retinal-image-data-using-optical-coherence-tomography
85. American Diabetes Association, Diabetic retinopathy. Diabetes Care 25, S90–S93 (2005)
86. Diabetes Information Clearinghouse. Diabetes, heart disease, and stroke (2005) NIH Publication No.06-5094
87. J. Cunha-Vaz, J.R. Faria de Abreu, A.J. Campos, Early breakdown of the blood-retinal barrier
in diabetes. Br. J. Ophthalmol. 59, 649–656 (1975)
88. P.E. Stanga, A.C. Bird, Optical coherence tomography (OCT): principles of operation, technology, indications in vitreoretinal imaging and interpretation of results. Int. Ophthalmol. 23,
191–197 (2001)
89. U.H. Schaudig, C. Glaefke, F. Scholz et al., Optical coherence tomography for retinal thickness
measurement in diabetic patients without clinically significant macular edema. Ophthalmic
Surg. Lasers 31, 182–186 (2000)
90. T. Oshitari, K. Hanawa, E. Adachi-Usami, Changes of macular and RNFL thicknesses measured by Stratus OCT in patients with early stage diabetes. Eye (Lond.) 23, 884–889 (2009)
91. B. Asefzadeh, B.M. Fisch, C.E. Parenteau et al., Macular thickness and systemic markers
for diabetes in individuals with no or mild diabetic retinopathy. Clin. Exp. Ophthalmol. 36,
455–463 (2008)
92. W. Goebel, T. Kretzchmar-Gross, Retinal thickness in diabetic retinopathy: a study using
optical coherence tomography (OCT). Retina 22, 759–767 (2002)
93. N.M. Bressler, A.R. Edwards, A.N. Antoszyk et al., Retinal thickness on Stratus optical
coherence tomography in people with diabetes and minimal or no diabetic retinopathy. Am.
J. Ophthalmol. 145, 894–901 (2008)
94. H.W. van Dijk, F.D. Verbraak, M. Stehouwer et al., Association of visual function and ganglion
cell layer thickness in patients with diabetes mellitus type 1 and no or minimal diabetic
retinopathy. Vis. Res. 28, 244–248 (2011)
95. D. Cabrera DeBuc, H.M. Salinas, S. Ranganathan, E. Tatrai, W. Gao et al., Improving image
segmentation performance and quantitative analysis via a computer-aided grading methodology for optical coherence tomography retinal image analysis. J. Biomed. Opt. 15, 046015
(2010)
96. D. Cabrera DeBuc, E. Tatrai, L. Laurik et al., Identifying local structural and optical derangement in the neural retina of individuals with type 1 diabetes. J. Clin. Exp. Ophthalmol. 4, 289
(2013). https://doi.org/10.4172/2155-9570.1000289
97. S. Vujosevic, E. Midena, Retinal layers changes in human preclinical and early clinical diabetic
retinopathy support early retinal neuronal and müller cells alterations. J. Diabetes Res. Article
ID 905058 (2013). https://doi.org/10.1155/2013/905058
98. R. Akshikar, M. Richardson, R. Crosby-Nwaobi et al., Retinal neuronal changes in people
with diabetes. Invest. Ophthalmol. Vis. Sci. 53, 2852 (2012)
99. C. Biallosterski, M.E. van Velthoven, R.P. Michels et al., Decreased optical coherence tomography measured pericentral retinal thickness in patients with diabetes mellitus type 1 with
minimal diabetic retinopathy. Br. J. Ophthalmol. 91, 1135–1138 (2007)
100. D.J. Browning, C.M. Fraser, S. Clark, The relationship of macular thickness to clinically
graded diabetic retinopathy severity in eyes without clinically detected diabetic macular
edema. Ophthalmology 115, 533–539 (2008)
101. I. Pires, R.C. Bernardes, C.L. Lobo et al., Retinal thickness in 25 eyes with mild nonproliferative retinopathy in patients with type 2 diabetes mellitus: comparison of measurements
obtained by retinal thickness analysis and optical coherence tomography. Arch. Ophthalmol.
120, 1301–1306 (2002)
161
82. Q. Chen, T. Leng, L. Zheng, L. Kutzscher, J. Ma et al., Automated drusen segmentation and
quantification in SD-OCT images. Med. Image Anal. 17(8), 1058–1072 (2013)
83. M.A. Mayer, J. Hornegger, C.Y. Mardin, R.P. Tornow, Retinal nerve fiber layer segmentation
on FD-OCT scans of normal subjects and glaucoma patients. Biomed. Opt. Express 1(5),
1358–1383 (2010)
84. D. Cabrera DeBuc, A review of algorithms for segmentation of retinal image data using optical
coherence tomography, in Image Segmentation, ed. by P.-G. Ho, InTech (2011). Available
from: http://www.intechopen.com/books/image-segmentation/a-review-of-algorithms-for-se
gmentation-of-retinal-image-data-using-optical-coherence-tomography
85. American Diabetes Association, Diabetic retinopathy. Diabetes Care 25, S90–S93 (2005)
86. Diabetes Information Clearinghouse. Diabetes, heart disease, and stroke (2005) NIH Publication No.06-5094
87. J. Cunha-Vaz, J.R. Faria de Abreu, A.J. Campos, Early breakdown of the blood-retinal barrier
in diabetes. Br. J. Ophthalmol. 59, 649–656 (1975)
88. P.E. Stanga, A.C. Bird, Optical coherence tomography (OCT): principles of operation, technology, indications in vitreoretinal imaging and interpretation of results. Int. Ophthalmol. 23,
191–197 (2001)
89. U.H. Schaudig, C. Glaefke, F. Scholz et al., Optical coherence tomography for retinal thickness
measurement in diabetic patients without clinically significant macular edema. Ophthalmic
Surg. Lasers 31, 182–186 (2000)
90. T. Oshitari, K. Hanawa, E. Adachi-Usami, Changes of macular and RNFL thicknesses measured by Stratus OCT in patients with early stage diabetes. Eye (Lond.) 23, 884–889 (2009)
91. B. Asefzadeh, B.M. Fisch, C.E. Parenteau et al., Macular thickness and systemic markers
for diabetes in individuals with no or mild diabetic retinopathy. Clin. Exp. Ophthalmol. 36,
455–463 (2008)
92. W. Goebel, T. Kretzchmar-Gross, Retinal thickness in diabetic retinopathy: a study using
optical coherence tomography (OCT). Retina 22, 759–767 (2002)
93. N.M. Bressler, A.R. Edwards, A.N. Antoszyk et al., Retinal thickness on Stratus optical
coherence tomography in people with diabetes and minimal or no diabetic retinopathy. Am.
J. Ophthalmol. 145, 894–901 (2008)
94. H.W. van Dijk, F.D. Verbraak, M. Stehouwer et al., Association of visual function and ganglion
cell layer thickness in patients with diabetes mellitus type 1 and no or minimal diabetic
retinopathy. Vis. Res. 28, 244–248 (2011)
95. D. Cabrera DeBuc, H.M. Salinas, S. Ranganathan, E. Tatrai, W. Gao et al., Improving image
segmentation performance and quantitative analysis via a computer-aided grading methodology for optical coherence tomography retinal image analysis. J. Biomed. Opt. 15, 046015
(2010)
96. D. Cabrera DeBuc, E. Tatrai, L. Laurik et al., Identifying local structural and optical derangement in the neural retina of individuals with type 1 diabetes. J. Clin. Exp. Ophthalmol. 4, 289
(2013). https://doi.org/10.4172/2155-9570.1000289
97. S. Vujosevic, E. Midena, Retinal layers changes in human preclinical and early clinical diabetic
retinopathy support early retinal neuronal and müller cells alterations. J. Diabetes Res. Article
ID 905058 (2013). https://doi.org/10.1155/2013/905058
98. R. Akshikar, M. Richardson, R. Crosby-Nwaobi et al., Retinal neuronal changes in people
with diabetes. Invest. Ophthalmol. Vis. Sci. 53, 2852 (2012)
99. C. Biallosterski, M.E. van Velthoven, R.P. Michels et al., Decreased optical coherence tomography measured pericentral retinal thickness in patients with diabetes mellitus type 1 with
minimal diabetic retinopathy. Br. J. Ophthalmol. 91, 1135–1138 (2007)
100. D.J. Browning, C.M. Fraser, S. Clark, The relationship of macular thickness to clinically
graded diabetic retinopathy severity in eyes without clinically detected diabetic macular
edema. Ophthalmology 115, 533–539 (2008)
101. I. Pires, R.C. Bernardes, C.L. Lobo et al., Retinal thickness in 25 eyes with mild nonproliferative retinopathy in patients with type 2 diabetes mellitus: comparison of measurements
obtained by retinal thickness analysis and optical coherence tomography. Arch. Ophthalmol.
120, 1301–1306 (2002)
