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Single-cell transcriptional profiles in human skeletal muscle
Aliza B. Rubenstein
, Gregory R. Smith
, Ulrika Raue
, Gwénaëlle Begue
, Kiril Minchev
,
Frederique Ruf-Zamojski
,
Venugopalan D. Nair
, Xingyu Wang
, Lan Zhou
,
Elena Zaslavsky
, Todd A. Trappe
, Scott Trappe
,
Stuart C. Sealfon
Graduate School of Biomedical Sciences
Icahn School of Medicine at Mount Sinai
Friedman Brain Institute
Neurology
Mount Sinai Academy of Physician-Scientists
Research output
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Contribution to journal
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Article
›
peer-review
229
Scopus citations
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Keyphrases
Transcriptional Profile
100%
Mononuclear Cells
100%
Human Skeletal muscle
100%
Fibro-adipogenic Progenitors
75%
Fibrillin-1 (FBN1)
50%
Skeletal muscle Cells
50%
Cell Subtypes
50%
Single-cell RNA Sequencing (scRNA-seq)
50%
Cell Proportion
50%
Skeletal muscle
25%
Tissue Analysis
25%
Metabolism
25%
RNA Sequencing (RNA-seq)
25%
Gene Expression
25%
Exercise Effect
25%
Individual Cells
25%
OR Genes
25%
Gene Expression Pattern
25%
Transcriptome
25%
Gene Signature
25%
Computational Methods
25%
Diaphragm
25%
Muscle Disease
25%
Bulk Tissue
25%
Acute Exercise
25%
Muscle Fiber
25%
Quadriceps
25%
Heterogeneous Tissue
25%
Fiber Cells
25%
Single-cell Expression
25%
Training Study
25%
Human Vastus Lateralis
25%
Exercise Training
25%
Human muscle Fibres
25%
Expression Map
25%
Transcriptomic Data
25%
Level Changes
25%
Diverse Effect
25%
Biochemistry, Genetics and Molecular Biology
Skeletal Muscle
100%
RNA Sequencing
60%
Progenitor Cell
60%
Gene Expression
40%
FBN1
40%
Transcriptome
40%
Metabolic Pathway
20%
Gene Signature
20%
Exercise
20%
Albendazole
20%