Enabling early detection of osteoarthritis from presymptomatic cartilage texture maps via transport-based learning is a research paper published in Proceedings of the National Academy of Sciences (2020). On theSindex it has a DataRank of 0. It has been cited 63 times.
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National Institutes of Health
Grant: GM130825
National Institutes of Health
Grant: GM090033
National Institute of Aging, Intramural Research Program
Grant: Intramural Research Program
HHS | NIH | National Institute of Arthritis and Musculoskeletal and Skin Diseases
Grant: K08AR071494
HHS | NIH | National Center for Advancing Translational Sciences
Grant: KL2TR0001856
Orthopaedic Research and Education Foundation
Grant: NA
NCATS NIH HHS
Grant: KL2 TR001856
NIGMS NIH HHS
Grant: R01 GM130825
NIGMS NIH HHS
Grant: R01 GM090033
National Institutes of Health
Grant: 5K08AR071494-03
Biofilm antibiotic tolerance in periprosthetic joint infection
National Institutes of Health
Grant: 3KL2TR001856-08S1
Institutional Career Development Core
FWCI
5.72
Citation Percentile
1.0%
Influential Citations
3
Citation Trend
Fields of Study
MeSH Terms
Keywords
Sustainable Development Goals
Additional file 1 of Single nucleotide polymorphism genes and mitochondrial DNA haplogroups as biomarkers for early prediction of knee osteoarthritis structural progressors: use of supervised machine learning classifiers
Additional file 1 of Single nucleotide polymorphism genes and mitochondrial DNA haplogroups as biomarkers for early prediction of knee osteoarthritis structural progressors: use of supervised machine learning classifiers
Additional file 2 of Single nucleotide polymorphism genes and mitochondrial DNA haplogroups as biomarkers for early prediction of knee osteoarthritis structural progressors: use of supervised machine learning classifiers
Additional file 2 of Single nucleotide polymorphism genes and mitochondrial DNA haplogroups as biomarkers for early prediction of knee osteoarthritis structural progressors: use of supervised machine learning classifiers
Additional file 3 of Single nucleotide polymorphism genes and mitochondrial DNA haplogroups as biomarkers for early prediction of knee osteoarthritis structural progressors: use of supervised machine learning classifiers
Additional file 3 of Single nucleotide polymorphism genes and mitochondrial DNA haplogroups as biomarkers for early prediction of knee osteoarthritis structural progressors: use of supervised machine learning classifiers
Additional file 4 of Single nucleotide polymorphism genes and mitochondrial DNA haplogroups as biomarkers for early prediction of knee osteoarthritis structural progressors: use of supervised machine learning classifiers
Additional file 4 of Single nucleotide polymorphism genes and mitochondrial DNA haplogroups as biomarkers for early prediction of knee osteoarthritis structural progressors: use of supervised machine learning classifiers
Additional file 5 of Single nucleotide polymorphism genes and mitochondrial DNA haplogroups as biomarkers for early prediction of knee osteoarthritis structural progressors: use of supervised machine learning classifiers
Additional file 5 of Single nucleotide polymorphism genes and mitochondrial DNA haplogroups as biomarkers for early prediction of knee osteoarthritis structural progressors: use of supervised machine learning classifiers
Additional file 6 of Single nucleotide polymorphism genes and mitochondrial DNA haplogroups as biomarkers for early prediction of knee osteoarthritis structural progressors: use of supervised machine learning classifiers
Additional file 6 of Single nucleotide polymorphism genes and mitochondrial DNA haplogroups as biomarkers for early prediction of knee osteoarthritis structural progressors: use of supervised machine learning classifiers
Additional file 7 of Single nucleotide polymorphism genes and mitochondrial DNA haplogroups as biomarkers for early prediction of knee osteoarthritis structural progressors: use of supervised machine learning classifiers
Additional file 7 of Single nucleotide polymorphism genes and mitochondrial DNA haplogroups as biomarkers for early prediction of knee osteoarthritis structural progressors: use of supervised machine learning classifiers
Additional file 1 of Identification of sulfur metabolism-related gene signature in osteoarthritis and TM9SF2’s sustenance effect on M2 macrophages' phagocytic activity
Additional file 1 of Identification of sulfur metabolism-related gene signature in osteoarthritis and TM9SF2’s sustenance effect on M2 macrophages' phagocytic activity