Molecular Pathway Analysis Using High-Throughput OMICS Molecular Data: Analysis of molecular pathway composition, architecture, and activation using high-throughput genomic, epigenetic, transcriptomic, proteomic, and metabolomic data
Editat de Anton Buzdinen Limba Engleză Paperback – dec 2024
- Provides theoretical insights, links to available resources and their descriptions, and protocols related to multiple possibilities and options of the molecular pathway analysis
- Elucidates unique instruments (i) for the quantitative pathway analysis using metabolomic data, and (ii) for algorithmic hypothesis-free reconstruction and functional annotation of the molecular pathways that have a strong potential to revolutionize the field
- Includes intuitive practical guidelines on the analysis of genomic, epigenetic, transcriptomic, proteomic, and metabolomic data at the molecular pathway level for non-bioinformaticians
- Provides state-of-the art in the field of Big molecular data analysis for research, medicine, biotechnology, pharmaceutics, and next-generation molecular diagnostics
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Specificații
ISBN-13: 9780443155680
ISBN-10: 0443155682
Pagini: 406
Dimensiuni: 191 x 235 mm
Greutate: 0.45 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0443155682
Pagini: 406
Dimensiuni: 191 x 235 mm
Greutate: 0.45 kg
Editura: ELSEVIER SCIENCE
Cuprins
1. Past, current, and future of molecular pathway analysis
2. Molecular data for the pathway analysis
3. Benefits and challenges of OMICS data integration at the pathway level
4. Controls for the molecular data: normalization, harmonization, and quality thresholds
5. Reconstruction of molecular pathways
6. Qualitative and quantitative molecular pathway analysis: mathematical methods and algorithms Methods and guidelines
7. Getting started with the molecular pathway analysis
8. Differential analysis of genes, proteins, and metabolites
9. Molecular pathway analysis using comparative genomic and epigenomic
10. Quantitative molecular pathway analysis using transcriptomic data
11. Proteomic data for quantitative molecular pathway analysis
12. Metabolomic data for quantitative molecular pathway analysis
13. Methods and tools for OMICS data integration Practical applications
14. Molecular pathway approach in medicine
15. Molecular pathway approach in pharmaceutics
16. Molecular pathway approach in biotechnology
17. Molecular pathway approach in life science studies
2. Molecular data for the pathway analysis
3. Benefits and challenges of OMICS data integration at the pathway level
4. Controls for the molecular data: normalization, harmonization, and quality thresholds
5. Reconstruction of molecular pathways
6. Qualitative and quantitative molecular pathway analysis: mathematical methods and algorithms Methods and guidelines
7. Getting started with the molecular pathway analysis
8. Differential analysis of genes, proteins, and metabolites
9. Molecular pathway analysis using comparative genomic and epigenomic
10. Quantitative molecular pathway analysis using transcriptomic data
11. Proteomic data for quantitative molecular pathway analysis
12. Metabolomic data for quantitative molecular pathway analysis
13. Methods and tools for OMICS data integration Practical applications
14. Molecular pathway approach in medicine
15. Molecular pathway approach in pharmaceutics
16. Molecular pathway approach in biotechnology
17. Molecular pathway approach in life science studies