With the advent of new technologies and acquired knowledge, the number of fields in omics and their applications in diverse areas are rapidly increasing in the postgenomics era. Such emerging fields—including pharmacogenomics, toxicogenomics, regulomics, spliceomics, metagenomics, and environomics—present budding solutions to combat global challenges in biomedicine, agriculture, and the environment. OMICS: Applications in Biomedical, Agricultural, and Environmental Sciences provides valuable insights into the applications of modern omics technologies to real-world problems in the life sciences. Filling a gap in the literature, it offers a broad, multidisciplinary view of current and emerging applications of omics in a single volume. Written by highly experienced active researchers, each chapter describes a particular area of omics and the associated technologies and applications. Topics covered include: Proteomics, epigenomics, and pharmacogenomics Toxicogenomics and the assessment of environmental pollutants Applications of plant metabolomics Nutrigenomics and its therapeutic applications Microalgal omics and omics approaches in biofuel production Next-generation sequencing and omics technology for transgenic plant analysis Omics approaches in crop improvement Engineering dark-operative chlorophyll synthesis Computational regulomics Omics techniques for the analysis of RNA splicing New fields, including metagenomics, glycomics, and miRNA Breast cancer biomarkers for early detection Environomics strategies for environmental sustainability This timely book explores a wide range of omics application areas in the biomedical, agricultural, and environmental sciences. Throughout, it highlights working solutions as well as open problems and future challenges. Demonstrating the diversity of omics, it introduces readers to state-of-the-art developments and trends in omics-driven research.
Lammert, M., & Timberlake, E. M. (1986). Termination of foster care for the older adolescent: Issues of emancipation and individuation.
Dou, L., E. Bertrand, C. Cerini, V. Faure, J. Sampol, R. Vanholder, Y. Berland, P. Brunet. ... A. Timberlake, B. Sumpio, R. Pfragner, I. M. Modlin, M. Kidd.
Chendrasekhar A, Moorman DW, Timberlake GA. An evaluation of the effects of ... Chittiboina P, Wylen E, Ogden A, et al. Traumatic spondylolisthesis of the ...
Hartmann LC, Radisky DC, Frost MH, et al. Understanding the premalignant potential of ... D'Alfonso TM, Wang K, Chiu YL, et al. Pathologic upgrade rates on ...
Stensland, J., Speedie, S., Ideker, M., House, J., & Thompson, T. (1999). The relative cost of outpatient ... Deal, J. L. (1987). Appraisal and diagnosis of ...
1 2 Howard, S. and Johnson, B. (2000) Resilient and Non-resilient Behaviour in ... 4 De Haan, L., Hawley, D. and Deal, J. (2002) 'Operationalizing family ...
... are not fluent in the language/s of the medical care provider.72 Research ... Anglo-Americans have traditionally placed a great deal of emphasis on the ...
This practical guide thoroughly discusses both well-established and new interventions that are applied to the spine for the purpose of pain relief.
Several versions of Pearson's MyLab & Mastering products exist for each title, including customized versions for individual schools, and registrations are not transferable.
If a picture paints a thousand words, imagine what video can do? Pearson Medical Assisting Videos help users learn the nuances and the details of many medical assisting procedures.