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Single-Cell Omics. Vol.1
Technological Advances and Applications

Inglese · Tascabile

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Single-Cell Omics: Volume 1: Technological Advances and Applications provides the latest technological developments and applications of single-cell technologies in the field of biomedicine. In the current era of precision medicine, the single-cell omics technology is highly promising due to its potential in diagnosis, prognosis and therapeutics. Sections in the book cover single-cell omics research and applications, diverse technologies applied in the topic, such as pangenomics, metabolomics, and multi-omics of single cells, data analysis, and several applications of single-cell omics within the biomedical field, for example in cancer, metabolic and neuro diseases, immunology, pharmacogenomics, personalized medicine and reproductive health.
This book is a valuable source for bioinformaticians, molecular diagnostic researchers, clinicians and members of the biomedical field who are interested in understanding more about single-cell omics and its potential for research and diagnosis.

Info autore

Dr. Debmalya Barh is currently a Visiting Full Professor (Titular, Grade-E) in Bioinformatics and Precision Health at the Department of Genetics, Ecology, and Evolution, ICB, Federal University of Minas Gerais, Brazil and honorary scientist of the Institute of Integrative Omics and Applied Biotechnology (IIOAB), India. With over 20 years of experience, he has led academic, healthcare, molecular diagnostic, and bioinformatics industry endeavors. He works with more than 400 scientists from 100+ top ranked organizations across 40+ countries and has 220+ publications and a branded editor for 10+ cutting-edge omics related reference books. He is an expert in in precision/personalized health and integrative omics-based biomarker and target discovery in infectious and complex lifestyle diseases.Dr. Vasco Azevedo is a full professor at the Department of Genetics, Ecology, and Evolution, Institute of Biological Sciences, Federal University of Minas Gerais, Brazil. He is a CNPq (Conselho Nacional de Desenvolvimento Científico e Tecnológico) researcher 1A, member of the Brazilian Academy of Sciences, Commander of the Order of Scientific Merit of the MCTI of the genetics advisory committee and the public policy working group on biotechnology and genetic resources of COBRG/CNPq, coordinator of the Associated International Laboratory Bactinfl from INRAE and UFMG, and vice-president of the Brazilian Association of Bioinformatics and Computational Biology. He holds a degree in veterinary medicine from the School of Veterinary Medicine of the Federal University of Bahia (1986), a master's degree (1989), a doctorate (1993) in the genetics of microorganisms from the Institut National Agronomique Paris Grignon, and a doctorate in bioinformatics from UFMG (2017). He did his postdoctorate work with the Department of Microbiology, School of Medicine, University of Pennsylvania, United States (1994). He was a professor at the Institute of Biomedical Sciences of the University of São Paulo (2004). He is an expert in genetics and bioinformatics and his work mainly focuses on genomics, transcriptomics, proteomics, metabolomics, vaccine development, diagnostics, and the development of next generation probiotics. He has more than 600 scientific publications, 14 books, and 60 chapters as well as 12 patents.

Dettagli sul prodotto

Con la collaborazione di Debmalya Barh (Editore), Vasco Ariston De Car Azevedo (Editore), Barh Debmalya (Editore), Vasco Ariston De Car Azevedo (Editore)
Editore Elsevier Science & Technology
 
Contenuto Libro
Forma del prodotto Tascabile
Data pubblicazione 06.03.2020
Categoria Scienze sociali, diritto, economia > Economia > Singoli rami economici, branche
 
EAN 9780128149195
ISBN 978-0-12-814919-5
Numero di pagine 490
Dimensioni (della confezione) 19.1 x 2.3 x 23.5 cm
 
Serie Technological Advances
Categorie Analysis, Applications, Immunology, Challenges, Cancer, crispr, MEDICAL / Biotechnology, Workflow, BUSINESS & ECONOMICS / Industries / Pharmaceutical & Biotechnology, bioinformatics, biotechnology, Processing, clustering, biomechanics, Sequencing, Visualization, proteins, mass spectrometry, Morphology, Proteomics, Systems Biology, Stem Cell Biology, Gene Expression, Pre-clinical medicine: basic sciences, Genomics, Phylogenetics, Chemical, biotechnology and pharmaceutical industries, Cancer Biology, Cell Death, Biotechnology Industries, Technologies, Microfluidics, Metagenomics, raman, targeted therapy, tumor progression, Single-cell genomics, OMICs, Transcriptomics, Transcriptome, Mosaicism, Biorobotics, Single-cell transcriptomics, tumor heterogeneity, miRNA, LncRNA, Mass spectrometry imaging, Single-Cell RNA Sequencing, Lab-on-a-chip, Embryogenesis, Metabolites, imputation, Cell isolation, Single-cell analysis, cellular functions, Single-Cell, epigenomics, cell growth, Omics Technologies, Industrial applications of scientific research and technological innovation, Cas9, cellular heterogeneity, noncoding RNA, facs, muscle metabolism, cancer cell biology, Macs, intact, SERS, single-cell proteomics, Single-cell omics, Single cell, noninvasive analysis, whole genome, miRAP, Budding yeast, High-content imaging, BITS-ChIP, nucleases, Intratumor heterogeneity, Label-free analysis, Single-cell isolation, Coding RNA, LincRNA, long noncoding RNA, Stochastic gene expression, Single-cell multiomics, Pseudotime trajectory construction, Nu-TRAP, Cell heterogeneity, Ribo-Tag/TRAP, Myofiber, Poly(A) mRNA tagging, Mass cytometry, Single muscle fiber, Fluorescence flow cytometry, Targeted DamID (TaDa), Single-cell computational analysis, TU tagging, Laser-capture microdissection LMD/LCM, Single-cell metabolomics, Tumor evolution, Single-cell proteomics (SCP), Phenotypic potential, Bulk sample sequencing, hiPSCs, Single cell omics
 

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