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Omics Approaches to Understanding Mu...
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Burniston, Jatin George.
Omics Approaches to Understanding Muscle Biology
紀錄類型:
書目-語言資料,印刷品 : Monograph/item
正題名/作者:
Omics Approaches to Understanding Muscle Biology/ edited by Jatin George Burniston, Yi-Wen Chen.
其他作者:
Burniston, Jatin George.
面頁冊數:
VII, 217 p. 35 illus., 32 illus. in color.online resource. :
Contained By:
Springer Nature eBook
標題:
Human physiology. -
電子資源:
https://doi.org/10.1007/978-1-4939-9802-9
ISBN:
9781493998029
Omics Approaches to Understanding Muscle Biology
Omics Approaches to Understanding Muscle Biology
[electronic resource] /edited by Jatin George Burniston, Yi-Wen Chen. - 1st ed. 2019. - VII, 217 p. 35 illus., 32 illus. in color.online resource. - Methods in Physiology,2628-7471. - Methods in Physiology,.
Part I: Genomic and Epi-genomic -- 1) GWAS/muscle function and diseases (by Eric Hoffman) -- 2) Whole genome and whole exon sequencing/muscle disorders (by Silvère van der Maarel and Richard Lemmers) -- 3) Epi-genome approaches/muscle regeneration (by Vittorio Sartorelli) -- Part II: Transcriptomic -- 4) RNA profiling (by Yi-Wen Chen, confirmed) -- 5) miRNA profiling (by Alyson Fiorillo) -- 6) Single cell profiling in muscle (byPier Lorenzo Puri) -- 7) Statistics and bioinformatics (by Heather Gordish) -- Part III: Proteomic -- 8). Proteome profiling of human/ clinical samples – i.e. necessarily label-free techniques (by Lawrence Mandarino) -- 9) Proteome profiling of cell and animal models – i.e. label techniques such as SILAC (by Matthias Mann OR SILAM with JR Yates III) -- 10) Global analysis of post-translational modifications (by David E James) -- 11) Proteome dynamics – synthesis and degradation on a proteome wide scale (by Jatin Burniston, confirmed) -- Part IV: Metabolomic -- 12) Non-targeted metabolomics using mass spectrometry (by Charles Burant).
This book is a collection of principles and current practices in omics research, applied to skeletal muscle physiology and disorders. The various sections are categorized according to the level of biological organization, namely, genomics (DNA), transcriptomics (RNA), proteomics (protein), and metabolomics (metabolite). With skeletal muscle as the unifying theme, and featuring contributions from leading experts in this traditional field of research, it highlights the importance of skeletal muscle tissue in human development, health and successful ageing. It also discusses other fascinating topics like developmental biology, muscular dystrophies, exercise, insulin resistance and atrophy due to disuse, ageing or other muscle diseases, conveying the vast opportunities for generating new hypotheses as well as testing existing hypotheses by combining high-throughput techniques with proper experiment designs, bioinformatics and statistical analyses. Presenting the latest research techniques, this book is a valuable resource for the physiology community, particularly researchers and grad students who want to explore the new opportunities for omics technologies in basic physiology research.
ISBN: 9781493998029
Standard No.: 10.1007/978-1-4939-9802-9doiSubjects--Topical Terms:
636012
Human physiology.
LC Class. No.: QP34-38
Dewey Class. No.: 612
Omics Approaches to Understanding Muscle Biology
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Part I: Genomic and Epi-genomic -- 1) GWAS/muscle function and diseases (by Eric Hoffman) -- 2) Whole genome and whole exon sequencing/muscle disorders (by Silvère van der Maarel and Richard Lemmers) -- 3) Epi-genome approaches/muscle regeneration (by Vittorio Sartorelli) -- Part II: Transcriptomic -- 4) RNA profiling (by Yi-Wen Chen, confirmed) -- 5) miRNA profiling (by Alyson Fiorillo) -- 6) Single cell profiling in muscle (byPier Lorenzo Puri) -- 7) Statistics and bioinformatics (by Heather Gordish) -- Part III: Proteomic -- 8). Proteome profiling of human/ clinical samples – i.e. necessarily label-free techniques (by Lawrence Mandarino) -- 9) Proteome profiling of cell and animal models – i.e. label techniques such as SILAC (by Matthias Mann OR SILAM with JR Yates III) -- 10) Global analysis of post-translational modifications (by David E James) -- 11) Proteome dynamics – synthesis and degradation on a proteome wide scale (by Jatin Burniston, confirmed) -- Part IV: Metabolomic -- 12) Non-targeted metabolomics using mass spectrometry (by Charles Burant).
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