Vibroarthrography for early detection of knee osteoarthritis using normalized frequency features
暂无分享,去创建一个
Simon Weidert | Marcus Müller | Stefan Taing | Jacqueline Huvanandana | Nima Befrui | Jens Elsner | Achim Flesser | Oussama Jarrousse | Tuan Nam Le | Walther H. W. Schulze | W. Schulze | S. Weidert | A. Flesser | N. Befrui | J. Elsner | Jacqueline Huvanandana | O. Jarrousse | Tuan Nam Le | Marcus Müller | S. Taing
[1] R.M. Rangayyan,et al. Analysis of knee vibration signals using linear prediction , 1992, IEEE Transactions on Biomedical Engineering.
[2] Sion Glyn-Jones,et al. Non-invasive imaging of cartilage in early osteoarthritis. , 2013, The bone & joint journal.
[3] Gaël Varoquaux,et al. Scikit-learn: Machine Learning in Python , 2011, J. Mach. Learn. Res..
[4] R. E. Outerbridge. FURTHER STUDIES ON THE ETIOLOGY OF CHONDROMALACIA PATELLAE. , 1964, The Journal of bone and joint surgery. British volume.
[5] Rangaraj M. Rangayyan,et al. Adaptive time-frequency analysis of knee joint vibroarthrographic signals for noninvasive screening of articular cartilage pathology , 2000, IEEE Transactions on Biomedical Engineering.
[6] A. Carr,et al. Questionnaire on the perceptions of patients about total knee replacement. , 1998, The Journal of bone and joint surgery. British volume.
[7] R. Mollan,et al. Vibration arthrography as a diagnostic aid in diseases of the knee. A preliminary report. , 1987, The Journal of bone and joint surgery. British volume.
[8] Vladimir Vapnik,et al. An overview of statistical learning theory , 1999, IEEE Trans. Neural Networks.
[9] C. Hüter. Grundriss der Chirurgie , 1880 .
[10] K. Erb. Über die Möglichkeit der Registrierung von Gelenkgeräuschen , 1933, Langenbeck's Archives of Surgery.
[11] D J Hunter,et al. The diagnostic performance of MRI in osteoarthritis: a systematic review and meta-analysis. , 2012, Osteoarthritis and cartilage.
[12] T. McCauley,et al. Chondromalacia patellae: diagnosis with MR imaging. , 1992, AJR. American journal of roentgenology.
[13] A PEYLAN. Direct auscultation of the joints; preliminary clinical observations. , 1953, Rheumatism.
[14] Gary King,et al. Logistic Regression in Rare Events Data , 2001, Political Analysis.
[15] Rangaraj M. Rangayyan,et al. Fractal analysis of knee-joint vibroarthrographic signals via power spectral analysis , 2013, Biomed. Signal Process. Control..
[16] Zahra M. K. Maussavi,et al. Screening of vibroarthrographic signals via adaptive segmentation and linear prediction modeling , 1996, IEEE Transactions on Biomedical Engineering.
[17] A. Guermazi,et al. Imaging of osteoarthritis: update from a radiological perspective , 2011, Current opinion in rheumatology.
[18] Tsair-Fwu Lee,et al. Analysis of Vibroarthrographic Signals for Knee Osteoarthritis Diagnosis , 2012, 2012 Sixth International Conference on Genetic and Evolutionary Computing.
[19] Thomas Aigner,et al. Articular cartilage and changes in Arthritis: Cell biology of osteoarthritis , 2001, Arthritis Research & Therapy.
[20] Jin U. Kang,et al. An enhanced algorithm for knee joint sound classification using feature extraction based on time-frequency analysis , 2009, Comput. Methods Programs Biomed..
[21] O. Schindler. Synovial plicae of the knee , 2004 .
[22] Rangaraj M. Rangayyan,et al. Screening of knee-joint vibroarthrographic signals using probability density functions estimated with Parzen windows , 2010, Biomed. Signal Process. Control..
[23] P. Welch. The use of fast Fourier transform for the estimation of power spectra: A method based on time averaging over short, modified periodograms , 1967 .
[24] L. Ryd,et al. Appropriate questionnaires for knee arthroplasty , 2001 .
[25] R.M. Rangayyan,et al. Analysis of knee joint sound signals for non-invasive diagnosis of cartilage pathology , 1990, IEEE Engineering in Medicine and Biology Magazine.
[26] R. E. Outerbridge. THE ETIOLOGY OF CHONDROMALACIA PATELLAE , 1961 .
[27] D. Slonim. From patterns to pathways: gene expression data analysis comes of age , 2002, Nature Genetics.
[28] G.D. Bell,et al. Mathematical modeling and spectrum analysis of the physiological patello-femoral pulse train produced by slow knee movement , 1992, IEEE Transactions on Biomedical Engineering.
[29] Yunfeng Wu,et al. Knee Joint Vibroarthrographic Signal Processing and Analysis , 2015 .
[30] R. Mollan,et al. What is physiological patellofemoral crepitus , 1985 .
[31] P. Colletti,et al. 3.0-Tesla MRI and arthroscopy for assessment of knee articular cartilage lesions. , 2013, Orthopedics.
[32] Hsuan-Tien Lin,et al. A note on Platt’s probabilistic outputs for support vector machines , 2007, Machine Learning.
[33] John Platt,et al. Probabilistic Outputs for Support vector Machines and Comparisons to Regularized Likelihood Methods , 1999 .
[35] H J Mankin,et al. Articular cartilage: degeneration and osteoarthritis, repair, regeneration, and transplantation. , 1998, Instructional course lectures.
[36] Nir Friedman,et al. Tissue classification with gene expression profiles. , 2000 .
[37] P. Emery,et al. The role of ultrasonography and magnetic resonance imaging in early rheumatoid arthritis. , 2003, Clinical and experimental rheumatology.
[38] E W JOHNSON,et al. Analysis of sounds from normal and pathologic knee joints. , 1961, Archives of physical medicine and rehabilitation.
[39] R M Rangayyan,et al. Localization of knee joint cartilage pathology by multichannel vibroarthrography. , 1995, Medical engineering & physics.
[40] Corinna Cortes,et al. Support-Vector Networks , 1995, Machine Learning.
[41] R M Rangayyan,et al. Auditory display of knee-joint vibration signals. , 2001, The Journal of the Acoustical Society of America.
[42] W. E. Blodgett,et al. Auscultation of the Knee Joint , 1902 .
[43] Rangaraj M. Rangayyan,et al. Screening of knee-joint vibroarthrographic signals using statistical parameters and radial basis functions , 2008, Medical & Biological Engineering & Computing.
[44] Pascal Madeleine,et al. A Review of Engineering Aspects of Vibroarthography of the Knee Joint , 2016 .
[45] D. W. Jackson,et al. THE ARTICULAR CARTILAGE REPAIR DILEMMA Symptomatic Articular Cartilage Degeneration , 2001 .
[46] L. Ryd,et al. Appropriate questionnaires for knee arthroplasty. Results of a survey of 3600 patients from The Swedish Knee Arthroplasty Registry. , 2001, The Journal of bone and joint surgery. British volume.
[47] V. Mattila,et al. Reliability of clinical findings and magnetic resonance imaging for the diagnosis of chondromalacia patellae. , 2010, The Journal of bone and joint surgery. American volume.
[48] Yunqian Ma,et al. Practical selection of SVM parameters and noise estimation for SVM regression , 2004, Neural Networks.
[49] C. F. Walters. THE VALUE OF JOINT AUSCULTATION. , 1929 .
[50] Carmen E. Quatman,et al. The Clinical Utility and Diagnostic Performance of Magnetic Resonance Imaging for Identification of Early and Advanced Knee Osteoarthritis , 2011, The American journal of sports medicine.
[51] Rangaraj M. Rangayyan,et al. Quantification of knee vibroarthrographic signal irregularity associated with patellofemoral joint cartilage pathology based on entropy and envelope amplitude measures , 2016, Comput. Methods Programs Biomed..
[52] Khaled S. Ahmed,et al. Estimating Protein Functions Correlation Based on Overlapping Proteins and Cluster Interactions , 2012 .
[53] Karthikeyan Umapathy,et al. Modified local discriminant bases algorithm and its application in analysis of human knee joint vibration signals , 2006, IEEE Transactions on Biomedical Engineering.
[54] Simon T. Donell,et al. ACCURACY OF CLINICAL DIAGNOSIS IN KNEE ARTHROSCOPY , 2010 .
[55] Chih-Jen Lin,et al. LIBSVM: A library for support vector machines , 2011, TIST.
[56] F Eckstein,et al. Age-related changes in the morphology and deformational behavior of knee joint cartilage. , 2001, Arthritis and rheumatism.
[57] Chih-Jen Lin,et al. A Practical Guide to Support Vector Classication , 2008 .
[58] Ning Xiang,et al. Classification of Knee Joint Vibration Signals Using Bivariate Feature Distribution Estimation and Maximal Posterior Probability Decision Criterion , 2013, Entropy.
[59] R.M. Rangayyan,et al. Adaptive cancellation of muscle contraction interference in vibroarthrographic signals , 1994, IEEE Transactions on Biomedical Engineering.
[60] Bernhard Schölkopf,et al. New Support Vector Algorithms , 2000, Neural Computation.
[61] R. Jackson,et al. The role of arthroscopy in the management of disorders of the knee. An analysis of 200 consecutive examinations. , 1972, The Journal of bone and joint surgery. British volume.
[62] Bernhard E. Boser,et al. A training algorithm for optimal margin classifiers , 1992, COLT '92.
[63] Rangaraj M. Rangayyan,et al. Analysis of Vibroarthrographic Signals with Features Related to Signal Variability and Radial-Basis Functions , 2008, Annals of Biomedical Engineering.
[64] E. Wu,et al. Physiological patellofemoral crepitus in knee joint disorders. , 1993, Bulletin (Hospital for Joint Diseases (New York, N.Y.)).