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RAP opportunity at National Institute of Standards and Technology NIST Microfluidics and Lab-on-a-Chip Technologies for Controlled Molecular Self-Assembly, Analytical Biochemistry, and
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; Early detection; Gene expression; High throughput sequencing; micro RNA; Microfluidics; Molecular biology; Multiplexed bioassays; Next generation sequencing; Single-cell assays; Eligibility Citizenship
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include particle characterization (including protein aggregates) for biotherapeutics, and cell viability measurements for cell-based therapies and cell-based biomanfacturing. A key method is to perform
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RAP opportunity at National Institute of Standards and Technology NIST Design, Development and Evaluation of Surface Plasmon Resonance Imaging as a Quantitative Microscopy of Live Cells and
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provides the thermochemical foundation for new noninvasive breath analysis techniques. Law enforcement applications include the development of breath analysis devices for the quantitative measurement of drug
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Quantitative biology; Stem cell; Pluripotency; Differentiation; Microscopy; Image analysis; Biological noise; Cell culture; Eligibility Citizenship: Open to U.S. citizens Level: Open to Postdoctoral applicants
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into cellular disfunction in diseases. At NIST, a highly sensitive technique was invented for sensing nanomotion of cell populations through measurements of phase noise of a resonant crystal on which cells
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the intensity of fluorescent proteins in individual cells over time. Stem cell populations can be highly heterogeneous and can exhibit complex responses. Using quantitative imaging data on large numbers of live
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RAP opportunity at National Institute of Standards and Technology NIST Absolute Quantitation in Molecular Imaging Location Physical Measurement Laboratory, Radiation Physics Division opportunity
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is an epigenetic modification and plays critical roles in many biological processes, including genomic imprinting, cell-fate determination, chromatin architecture organization, and regulation of gene