A Comparative Systematic Literature Review on Knee Bone Reports from MRI, X-Rays and CT Scans Using Deep Learning and Machine Learning Methodologies
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Sultan H. Almotiri | Muhammad Adnan Khan | Muzammil Hussain | Muhammad Shoaib Farooq | Kalsoom Fatima | Khalid Masood | Mohammed A. Al Ghamdi | Hafsa Khalid | Mohammed A Al Ghamdi | Tayyaba Khalid | Khadija Khalid | Sultan H Almotiri | Aqsa Ahmed | Muhammad Adnan Khan | M. Farooq | M. Hussain | Kalsoom Fatima | Tayyaba Khalid | Khalid Masood | Hafsa Khalid | K. Khalid | Aqsa Ahmed
[1] K. Fishbein,et al. Multivariate analysis of cartilage degradation using the support vector machine algorithm , 2012, Magnetic resonance in medicine.
[2] M. D. Ryzhkov,et al. Knee Cartilage Segmentation Algorithms: a Critical Literature Review , 2015 .
[3] Stuart Crozier,et al. Automatic segmentation of the bone and extraction of the bone–cartilage interface from magnetic resonance images of the knee , 2007, Physics in medicine and biology.
[4] B. B. Zaidan,et al. A security framework for mHealth apps on Android platform , 2018, Comput. Secur..
[5] Simo Saarakkala,et al. Automatic Knee Osteoarthritis Diagnosis from Plain Radiographs: A Deep Learning-Based Approach , 2017, Scientific Reports.
[6] Khalid Masood Khan,et al. Brain Tumor Analysis Empowered with Deep Learning: A Review, Taxonomy, and Future Challenges , 2020, Brain sciences.
[7] Talha Mahboob Alam,et al. A journey of WEB and Blockchain towards the Industry 4.0: An Overview , 2019, 2019 International Conference on Innovative Computing (ICIC).
[8] Ronald M. Summers,et al. Detection of Sclerotic Spine Metastases via Random Aggregation of Deep Convolutional Neural Network Classifications , 2014, ArXiv.
[9] Rodina Binti Ahmad,et al. A systematic literature review on Enterprise Architecture Implementation Methodologies , 2015, Inf. Softw. Technol..
[10] Lior Shamir,et al. Knee X-Ray Image Analysis Method for Automated Detection of Osteoarthritis , 2009, IEEE Transactions on Biomedical Engineering.
[11] Razali Jidin,et al. An Adept Edge Detection Algorithm for Human Knee Osteoarthritis Images , 2010, 2010 International Conference on Signal Acquisition and Processing.
[12] Joseph Antony,et al. Quantifying radiographic knee osteoarthritis severity using deep convolutional neural networks , 2016, 2016 23rd International Conference on Pattern Recognition (ICPR).
[13] O. Jin. Finite element analysis of porcine trabecular bone based on micro-CT images , 2015 .
[14] Siti Mariyam Shamsuddin,et al. A systematic literature review on features of deep learning in big data analytics , 2017 .
[15] Christoph Meinel,et al. Deep Learning for Medical Image Analysis , 2018, Journal of Pathology Informatics.
[16] William Hoff,et al. In vivo determination of normal and anterior cruciate ligament-deficient knee kinematics. , 2005, Journal of biomechanics.
[17] Wei Huang,et al. CT- versus MRI-based patient-specific instrumentation for total knee arthroplasty: A systematic review and meta-analysis. , 2017, The surgeon : journal of the Royal Colleges of Surgeons of Edinburgh and Ireland.
[18] C. Langlotz,et al. Performance of a Machine Learning Classifier of Knee MRI Reports in Two Large Academic Radiology Practices: A Tool to Estimate Diagnostic Yield. , 2017, AJR. American journal of roentgenology.
[19] Muzammil Hussain,et al. FPGA Based Implementations of RNN and CNN: A Brief Analysis , 2019, 2019 International Conference on Innovative Computing (ICIC).
[20] Insha Rafique,et al. Autism Identification and Learning Through Motor Gesture Patterns , 2019, 2019 International Conference on Innovative Computing (ICIC).
[21] Stefan M. Gabriel,et al. Three-dimensional determination of femoral-tibial contact positions under in vivo conditions using fluoroscopy. , 1998, Clinical biomechanics.
[22] R. Campanini. A deep learning approach to bone segmentation in CT scans , 2017 .
[23] Dimitris N. Metaxas,et al. Automated anatomical landmark detection ondistal femur surface using convolutional neural network , 2015, 2015 IEEE 12th International Symposium on Biomedical Imaging (ISBI).
[24] G. Matsopoulos,et al. Active segmentation of micro-CT trabecular bone images , 2011, 2011 10th International Workshop on Biomedical Engineering.
[25] Harsh Agarwal,et al. Automatic knee cartilage segmentation using fully volumetric convolutional neural networks for evaluation of osteoarthritis , 2018, 2018 IEEE 15th International Symposium on Biomedical Imaging (ISBI 2018).
[26] Stefan Zachow,et al. Automated segmentation of knee bone and cartilage combining statistical shape knowledge and convolutional neural networks: Data from the Osteoarthritis Initiative , 2019, Medical Image Anal..
[27] Ravindra S. Hegadi,et al. Identification of Knee Osteoarthritis Using Texture Analysis , 2018, Data Analytics and Learning.
[28] Yoon Sang Kim,et al. Computed Tomographic Image Analysis Based on FEM Performance Comparison of Segmentation on Knee Joint Reconstruction , 2014, TheScientificWorldJournal.
[29] Sobia Mehrban,et al. Performance Analysis and Route Optimization: Redistribution between EIGRP, OSPF & BGP Routing Protocols , 2020, Comput. Stand. Interfaces.
[30] Muzammil Hussain,et al. A Policy Recommendations Framework To Resolve Global Software Development Issues , 2019, 2019 International Conference on Innovative Computing (ICIC).
[31] Yaohang Li,et al. Clinical big data and deep learning: Applications, challenges, and future outlooks , 2019, Big Data Min. Anal..
[32] Pooja U. Patravali,et al. Detection of Osteoarthritis using Knee X-Ray Image Analyses: A Machine Vision based Approach , 2016 .
[33] Touseef Tahir,et al. Systematic Literature Review on Software Measurement Programs , 2016 .
[34] Christian Kruse,et al. Machine Learning Principles Can Improve Hip Fracture Prediction , 2017, Calcified Tissue International.
[35] Dongyoun Kim,et al. Development of automated 3D knee bone segmentation with inhomogeneity correction for deformable approach in magnetic resonance imaging , 2018, RACS.
[36] F. Shellock,et al. Hematopoietic bone marrow hyperplasia: high prevalence on MR images of the knee in asymptomatic marathon runners. , 1992, AJR. American journal of roentgenology.
[37] Sébastien Ourselin,et al. MR image segmentation of the knee bone using phase information , 2007, Medical Image Anal..
[38] D. Robertson,et al. Machine learning based analytics of micro-MRI trabecular bone microarchitecture and texture in type 1 Gaucher disease. , 2016, Journal of biomechanics.
[39] I. Goldberg,et al. Machine learning classification of OARSI-scored human articular cartilage using magnetic resonance imaging. , 2015, Osteoarthritis and cartilage.
[40] Muhammad Adnan Khan,et al. Analysis of Smart Citizens: A Fuzzy Based Approach , 2019, 2019 International Conference on Electrical, Communication, and Computer Engineering (ICECCE).
[41] Dinggang Shen,et al. Machine Learning in Medical Imaging , 2012, Lecture Notes in Computer Science.
[42] Cheng Chen,et al. Finite element modeling of trabecular bone from multi-row detector CT imaging , 2014 .
[43] J. Meehan,et al. A Brief Analysis , 1974 .
[44] Chii-Jeng Lin,et al. Automatic Insall–Salvati ratio measurement on lateral knee x-ray images using model-guided landmark localization , 2010, Physics in medicine and biology.
[45] E. Lespessailles,et al. A decision support tool for early detection of knee OsteoArthritis using X-ray imaging and machine learning: Data from the OsteoArthritis Initiative , 2019, Comput. Medical Imaging Graph..
[46] W. Leow,et al. DETECTION OF FEMUR AND RADIUS FRACTURES IN X-RAY IMAGES , 2004 .
[47] John Kim,et al. A SSLBP-based feature extraction framework to detect bones from knee MRI scans , 2018, RACS.
[48] Woowon Lee. Structure-property relations of porcine trabecular bone and micro-CT imaging of various materials , 2013 .
[49] F. Liu,et al. Deep Learning Approach for Evaluating Knee MR Images: Achieving High Diagnostic Performance for Cartilage Lesion Detection. , 2018, Radiology.