Automated detection of preserved photoreceptor on optical coherence tomography in choroideremia based on machine learning
暂无分享,去创建一个
Dengwang Li | David Huang | Acner Camino | Yali Jia | Jie Wang | Zhuo Wang | Ahmed M Hagag | Richard G Weleber | Paul Yang | Mark E Pennesi | Ahmed M. Hagag | David Huang | Dengwang Li | Yali Jia | Acner Camino | Jie Wang | R. Weleber | M. Pennesi | Paul Yang | Zhuo Wang
[1] Allen R. Tannenbaum,et al. Localizing Region-Based Active Contours , 2008, IEEE Transactions on Image Processing.
[2] K. Xue,et al. Correlation of Optical Coherence Tomography and Autofluorescence in the Outer Retina and Choroid of Patients With Choroideremia , 2016, Investigative ophthalmology & visual science.
[3] Qiang Li,et al. An active contour model for medical image segmentation with application to brain CT image. , 2013, Medical physics.
[4] David Huang,et al. Choriocapillaris evaluation in choroideremia using optical coherence tomography angiography. , 2017, Biomedical optics express.
[5] David Huang,et al. Advanced image processing for optical coherence tomographic angiography of macular diseases. , 2015, Biomedical optics express.
[6] Simon S. Gao,et al. Optical Coherence Tomography Angiography in Choroideremia: Correlating Choriocapillaris Loss With Overlying Degeneration. , 2016, JAMA ophthalmology.
[7] I. MacDonald,et al. Choroideremia: new findings from ocular pathology and review of recent literature. , 2009, Survey of ophthalmology.
[8] N. Otsu. A threshold selection method from gray level histograms , 1979 .
[9] Cheryl N. Zimmer,et al. A case study of choroideremia carrier – Use of multi-spectral imaging in highlighting clinical features , 2016, American journal of ophthalmology case reports.
[10] A. Milam,et al. Evaluation of retinal photoreceptors and pigment epithelium in a female carrier of choroideremia. , 2001, Ophthalmology.
[11] Leo Breiman,et al. Random Forests , 2001, Machine Learning.
[12] S. Sadda,et al. Proposed lexicon for anatomic landmarks in normal posterior segment spectral-domain optical coherence tomography: the IN•OCT consensus. , 2014, Ophthalmology.
[13] Jerry L Prince,et al. Automatic segmentation of microcystic macular edema in OCT. , 2014, Biomedical optics express.
[14] A. Roorda,et al. High-resolution images of retinal structure in patients with choroideremia. , 2013, Investigative Ophthalmology and Visual Science.
[15] David J. Wilson,et al. Quantitative optical coherence tomography angiography of vascular abnormalities in the living human eye , 2015, Proceedings of the National Academy of Sciences.
[16] R. MacLaren,et al. Retinal pigment epithelium defects accelerate photoreceptor degeneration in cell type-specific knockout mouse models of choroideremia. , 2010, Investigative ophthalmology & visual science.
[17] M. Michaelides,et al. Clinical and Genetic Features of Choroideremia in Childhood. , 2016, Ophthalmology.
[18] C. Rivolta,et al. A Comprehensive Analysis of Choroideremia: From Genetic Characterization to Clinical Practice , 2016, PloS one.
[19] G. Chader,et al. Choroideremia: a clinical, electron microscopic, and biochemical report. , 1984, Ophthalmology.
[20] James G. Fujimoto,et al. Motion correction in optical coherence tomography volumes on a per A-scan basis using orthogonal scan patterns , 2012, Biomedical optics express.
[21] J. Flannery,et al. A histopathologic study of a choroideremia carrier. , 1990, Investigative ophthalmology & visual science.
[22] Martin F. Kraus,et al. Split-spectrum amplitude-decorrelation angiography with optical coherence tomography , 2012, Optics express.
[23] Jui-Kai Wang,et al. Multimodal Segmentation of Optic Disc and Cup From SD-OCT and Color Fundus Photographs Using a Machine-Learning Graph-Based Approach , 2015, IEEE Transactions on Medical Imaging.
[24] Lei Wang,et al. An active contour model based on local fitted images for image segmentation , 2017, Inf. Sci..
[25] Omer P. Kocaoglu,et al. The cellular origins of the outer retinal bands in optical coherence tomography images. , 2014, Investigative ophthalmology & visual science.
[26] B. Weber,et al. Progression of retinal pigment epithelial alterations during long-term follow-up in female carriers of choroideremia and report of a novel CHM mutation. , 2009, Archives of ophthalmology.
[27] R. Carr,et al. Fluorescein angiography of the hereditary choroidal dystrophies. , 1977, The British journal of ophthalmology.
[28] J. D. Cameron,et al. Histopathologic observations in choroideremia with emphasis on vascular changes of the uveal tract. , 1987, Ophthalmology.
[29] F. Pichi,et al. Multimodal Imaging in Hereditary Retinal Diseases , 2013, Journal of ophthalmology.
[30] Simon S. Gao,et al. Characterization of Chorioretinopathy Associated with Mitochondrial Trifunctional Protein Disorders: Long-Term Follow-up of 21 Cases. , 2016, Ophthalmology.
[31] F. Cremers,et al. Retinal gene therapy in patients with choroideremia: initial findings from a phase 1/2 clinical trial , 2014, The Lancet.
[32] David Huang,et al. Evaluation of artifact reduction in optical coherence tomography angiography with real-time tracking and motion correction technology. , 2016, Biomedical optics express.
[33] G. Holder,et al. Visual Acuity after Retinal Gene Therapy for Choroideremia. , 2016, The New England journal of medicine.
[34] E. Traboulsi,et al. Choroideremia: Effect of age on visual acuity in patients and female carriers , 2012, Ophthalmic genetics.
[35] Jerry L Prince,et al. Retinal layer segmentation of macular OCT images using boundary classification , 2013, Biomedical optics express.
[36] C. Curcio,et al. ANATOMICAL CORRELATES TO THE BANDS SEEN IN THE OUTER RETINA BY OPTICAL COHERENCE TOMOGRAPHY: Literature Review and Model , 2011, Retina.