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Differentially expressed circulating miRNAs after 12wk resistance exercise
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Hungwen Liu创建时间:
2019-08-22
相关数据集
Genome-wide DNA methylation and mRNA responses to a bout of higher versus lower load resistance training in previously trained men. Genome-wide DNA methylation and mRNA responses to a bout of higher versus lower load resistance training in previously trained men
We sought to determine skeletal muscle genome-wide DNA methylation and transcriptome changes to one bout of lower-load (LL) versus higher-load (HL) resistance exercise. Previously trained college-aged
NIAID Data Ecosystem40
Genome-wide DNA methylation and mRNA responses to a bout of higher versus lower load resistance training in previously trained men
We sought to determine skeletal muscle genome-wide DNA methylation and transcriptome changes to one bout of lower-load (LL) versus higher-load (HL) resistance exercise. Previously trained college-aged
NIAID Data Ecosystem20
The 24-Hour Time Course of Integrated Molecular Responses to Resistance Exercise in Human Skeletal Muscle Implicates MYC as a Hypertrophic Regulator
Molecular control of recovery after exercise in muscle is temporally dynamic. A time course of biopsies around resistance exercise (RE) combined with -omics is necessary to better comprehend the molec
NIAID Data Ecosystem10
List of differentially expressed circulating miRNAs in the identification group.
Ct values were used to evaluate differences among the identification group and to select candidate miRNAs List of differentially expressed circulating miRNAs in the identification group.
NIAID Data Ecosystem20



