Fully automatic knee osteoarthritis severity grading using deep neural networks with a novel ordinal loss
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Xiaoshuang Shi | Lin Yang | Pingjun Chen | Linlin Gao | Kyle Allen | K. Allen | Lin Yang | Xiaoshuang Shi | Linlin Gao | Pingjun Chen
[1] Philip G. Conaghan,et al. Impact and therapy of osteoarthritis: the Arthritis Care OA Nation 2012 survey , 2015, Clinical Rheumatology.
[2] Ramprasaath R. Selvaraju,et al. Grad-CAM: Why did you say that? Visual Explanations from Deep Networks via Gradient-based Localization , 2016 .
[3] Ali Farhadi,et al. You Only Look Once: Unified, Real-Time Object Detection , 2015, 2016 IEEE Conference on Computer Vision and Pattern Recognition (CVPR).
[4] Pierrick Coupé,et al. MRI white matter lesion segmentation using an ensemble of neural networks and overcomplete patch-based voting , 2018, Comput. Medical Imaging Graph..
[5] Horst K. Hahn,et al. Deep learning nuclei detection: A simple approach can deliver state-of-the-art results , 2018, Comput. Medical Imaging Graph..
[6] Bram van Ginneken,et al. A survey on deep learning in medical image analysis , 2017, Medical Image Anal..
[7] Yefeng Zheng,et al. Deep Learning and Convolutional Neural Networks for Medical Image Computing , 2017, Advances in Computer Vision and Pattern Recognition.
[8] Sebastian Thrun,et al. Dermatologist-level classification of skin cancer with deep neural networks , 2017, Nature.
[9] Joseph Antony,et al. Quantifying radiographic knee osteoarthritis severity using deep convolutional neural networks , 2016, 2016 23rd International Conference on Pattern Recognition (ICPR).
[10] Gang Hua,et al. Ordinal Regression with Multiple Output CNN for Age Estimation , 2016, 2016 IEEE Conference on Computer Vision and Pattern Recognition (CVPR).
[11] Geoffrey E. Hinton,et al. Visualizing Data using t-SNE , 2008 .
[12] Subhashini Venugopalan,et al. Development and Validation of a Deep Learning Algorithm for Detection of Diabetic Retinopathy in Retinal Fundus Photographs. , 2016, JAMA.
[13] Jian Sun,et al. Deep Residual Learning for Image Recognition , 2015, 2016 IEEE Conference on Computer Vision and Pattern Recognition (CVPR).
[14] Yuichiro Hayashi,et al. An application of cascaded 3D fully convolutional networks for medical image segmentation , 2018, Comput. Medical Imaging Graph..
[15] Le Lu,et al. Pancreas Segmentation in MRI Using Graph-Based Decision Fusion on Convolutional Neural Networks , 2016, MICCAI.
[16] Alain Pitiot,et al. Fusing fine-tuned deep features for skin lesion classification , 2019, Comput. Medical Imaging Graph..
[17] Wei Liu,et al. SSD: Single Shot MultiBox Detector , 2015, ECCV.
[18] Simo Saarakkala,et al. A Novel Method for Automatic Localization of Joint Area on Knee Plain Radiographs , 2017, SCIA.
[19] Bill Triggs,et al. Histograms of oriented gradients for human detection , 2005, 2005 IEEE Computer Society Conference on Computer Vision and Pattern Recognition (CVPR'05).
[20] Lars Engebretsen,et al. Defining the presence of radiographic knee osteoarthritis: a comparison between the Kellgren and Lawrence system and OARSI atlas criteria , 2015, Knee Surgery, Sports Traumatology, Arthroscopy.
[21] Geoffrey E. Hinton,et al. Deep Learning , 2015, Nature.
[22] Sergey Ioffe,et al. Rethinking the Inception Architecture for Computer Vision , 2015, 2016 IEEE Conference on Computer Vision and Pattern Recognition (CVPR).
[23] Kaiming He,et al. Faster R-CNN: Towards Real-Time Object Detection with Region Proposal Networks , 2015, IEEE Transactions on Pattern Analysis and Machine Intelligence.
[24] Simo Saarakkala,et al. Automatic Knee Osteoarthritis Diagnosis from Plain Radiographs: A Deep Learning-Based Approach , 2017, Scientific Reports.
[25] Ali Farhadi,et al. YOLO9000: Better, Faster, Stronger , 2016, 2017 IEEE Conference on Computer Vision and Pattern Recognition (CVPR).
[26] Chandan Chakraborty,et al. Efficient deep learning model for mitosis detection using breast histopathology images , 2017, Comput. Medical Imaging Graph..
[27] Trevor Darrell,et al. Rich Feature Hierarchies for Accurate Object Detection and Semantic Segmentation , 2013, 2014 IEEE Conference on Computer Vision and Pattern Recognition.
[28] Andrew Zisserman,et al. Very Deep Convolutional Networks for Large-Scale Image Recognition , 2014, ICLR.
[29] Noel E. O'Connor,et al. Automatic Detection of Knee Joints and Quantification of Knee Osteoarthritis Severity Using Convolutional Neural Networks , 2017, MLDM.
[30] Kilian Q. Weinberger,et al. Densely Connected Convolutional Networks , 2016, 2017 IEEE Conference on Computer Vision and Pattern Recognition (CVPR).
[31] T. Neogi,et al. The epidemiology and impact of pain in osteoarthritis. , 2013, Osteoarthritis and cartilage.
[32] Hai Su,et al. Robust Cell Detection and Segmentation in Histopathological Images Using Sparse Reconstruction and Stacked Denoising Autoencoders , 2015, MICCAI.
[33] J. Kellgren,et al. Radiological Assessment of Osteo-Arthrosis , 1957, Annals of the rheumatic diseases.
[34] Yi Wang,et al. Retinal blood vessel segmentation using fully convolutional network with transfer learning , 2018, Comput. Medical Imaging Graph..
[35] Lior Shamir,et al. Knee X-Ray Image Analysis Method for Automated Detection of Osteoarthritis , 2009, IEEE Transactions on Biomedical Engineering.