self-organising map (som) profiling (Partek)
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Self Organising Map (Som) Profiling, supplied by Partek, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
https://www.bioz.com/product/self-organising+map+(som)+profiling/self+organizing+map++som++25/10__1113_slash_jp288104-140-12-27
Average 90 stars, based on 1 article reviews
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Comparison:Article Title: Human skeletal muscle possesses both reversible proteomic signatures and a retained proteomic memory after repeated resistance training Article Snippet: To plot temporal changes in proteins across the intervention, we undertook Self Organising Map (SOM) profiling of the change in standardised mean protein content within each time-point using Article Title: Human skeletal muscle possesses both reversible proteomic signatures and a retained proteomic memory after repeated resistance training Article Snippet: To plot temporal changes in proteins across the intervention, we undertook self-organising map (SOM) profiling of the change in standardized mean protein content within each time-point using Article Title: DNA methylation across the genome in aged human skeletal muscle tissue and muscle-derived cells: the role of HOX genes and physical activity Article Snippet: Finally, in order to plot temporal changes in methylation across the time-course of muscle cell differentiation we undertook Self Organising Map (SOM) profiling of the change in mean methylation within each condition using Protein Binding:Article Title: Human skeletal muscle possesses both reversible proteomic signatures and a retained proteomic memory after repeated resistance training Article Snippet: To plot temporal changes in proteins across the intervention, we undertook Self Organising Map (SOM) profiling of the change in standardised mean protein content within each time-point using Article Title: Human skeletal muscle possesses both reversible proteomic signatures and a retained proteomic memory after repeated resistance training Article Snippet: To plot temporal changes in proteins across the intervention, we undertook self-organising map (SOM) profiling of the change in standardized mean protein content within each time-point using Article Title: DNA methylation across the genome in aged human skeletal muscle tissue and muscle-derived cells: the role of HOX genes and physical activity Article Snippet: Finally, in order to plot temporal changes in methylation across the time-course of muscle cell differentiation we undertook Self Organising Map (SOM) profiling of the change in mean methylation within each condition using Binding Assay:Article Title: Human skeletal muscle possesses both reversible proteomic signatures and a retained proteomic memory after repeated resistance training Article Snippet: To plot temporal changes in proteins across the intervention, we undertook Self Organising Map (SOM) profiling of the change in standardised mean protein content within each time-point using Article Title: Human skeletal muscle possesses both reversible proteomic signatures and a retained proteomic memory after repeated resistance training Article Snippet: To plot temporal changes in proteins across the intervention, we undertook self-organising map (SOM) profiling of the change in standardized mean protein content within each time-point using Article Title: DNA methylation across the genome in aged human skeletal muscle tissue and muscle-derived cells: the role of HOX genes and physical activity Article Snippet: Finally, in order to plot temporal changes in methylation across the time-course of muscle cell differentiation we undertook Self Organising Map (SOM) profiling of the change in mean methylation within each condition using Activity Assay:Article Title: Human skeletal muscle possesses both reversible proteomic signatures and a retained proteomic memory after repeated resistance training Article Snippet: To plot temporal changes in proteins across the intervention, we undertook Self Organising Map (SOM) profiling of the change in standardised mean protein content within each time-point using Article Title: Human skeletal muscle possesses both reversible proteomic signatures and a retained proteomic memory after repeated resistance training Article Snippet: To plot temporal changes in proteins across the intervention, we undertook self-organising map (SOM) profiling of the change in standardized mean protein content within each time-point using Article Title: DNA methylation across the genome in aged human skeletal muscle tissue and muscle-derived cells: the role of HOX genes and physical activity Article Snippet: Finally, in order to plot temporal changes in methylation across the time-course of muscle cell differentiation we undertook Self Organising Map (SOM) profiling of the change in mean methylation within each condition using Methylation:Article Title: Human skeletal muscle possesses both reversible proteomic signatures and a retained proteomic memory after repeated resistance training Article Snippet: To plot temporal changes in proteins across the intervention, we undertook Self Organising Map (SOM) profiling of the change in standardised mean protein content within each time-point using Article Title: Human skeletal muscle possesses both reversible proteomic signatures and a retained proteomic memory after repeated resistance training Article Snippet: To plot temporal changes in proteins across the intervention, we undertook self-organising map (SOM) profiling of the change in standardized mean protein content within each time-point using Article Title: DNA methylation across the genome in aged human skeletal muscle tissue and muscle-derived cells: the role of HOX genes and physical activity Article Snippet: Finally, in order to plot temporal changes in methylation across the time-course of muscle cell differentiation we undertook Self Organising Map (SOM) profiling of the change in mean methylation within each condition using Cell Differentiation:Article Title: Human skeletal muscle possesses both reversible proteomic signatures and a retained proteomic memory after repeated resistance training Article Snippet: To plot temporal changes in proteins across the intervention, we undertook Self Organising Map (SOM) profiling of the change in standardised mean protein content within each time-point using Article Title: Human skeletal muscle possesses both reversible proteomic signatures and a retained proteomic memory after repeated resistance training Article Snippet: To plot temporal changes in proteins across the intervention, we undertook self-organising map (SOM) profiling of the change in standardized mean protein content within each time-point using Article Title: DNA methylation across the genome in aged human skeletal muscle tissue and muscle-derived cells: the role of HOX genes and physical activity Article Snippet: Finally, in order to plot temporal changes in methylation across the time-course of muscle cell differentiation we undertook Self Organising Map (SOM) profiling of the change in mean methylation within each condition using DNA Methylation Assay:Article Title: Human skeletal muscle possesses both reversible proteomic signatures and a retained proteomic memory after repeated resistance training Article Snippet: To plot temporal changes in proteins across the intervention, we undertook Self Organising Map (SOM) profiling of the change in standardised mean protein content within each time-point using Article Title: Human skeletal muscle possesses both reversible proteomic signatures and a retained proteomic memory after repeated resistance training Article Snippet: To plot temporal changes in proteins across the intervention, we undertook self-organising map (SOM) profiling of the change in standardized mean protein content within each time-point using Article Title: DNA methylation across the genome in aged human skeletal muscle tissue and muscle-derived cells: the role of HOX genes and physical activity Article Snippet: Finally, in order to plot temporal changes in methylation across the time-course of muscle cell differentiation we undertook Self Organising Map (SOM) profiling of the change in mean methylation within each condition using |
