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301.975.5473 Description Molecular diagnostics are a crucial part of personalized medicine. Molecular diagnostic methods such as PCR, qPCR, RT-PCR and Next-Generation Sequencing (NGS) can be used to detect
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bacteria typically reproduce asexually, they have developed multiple methods to share genetic information via Horizontal Gene Transfer (HGT, also called Lateral Gene Transfer). These mechanisms operate
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viability in scaffolds as a quality attribute of a tissue engineered medical product. We will develop new methods for assessing cell viability in scaffolds that have advantages such as being label-free, non
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and LC-MS/MS, GC-MS) and a state-of-the art aquaculture research center at IMET. Potential research areas of interest include the development of sensitive and selective methods for determining organic
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fires and provide motivation for the application of similar technologies. We are interested in developing improved measurement methods of flow, temperature, heat transfer, gas species, and particulate
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New measurement methods and tools are required for biology to emerge fully as an enabling, practical platform for engineering. The Cellular Engineering Group works to provide a foundation of
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measurements during the build process. Material characterization includes SEM and TEM methods, lab and synchrotron X-ray diffraction, DSC, dilatometry, synchrotron X-ray and neutron residual stress measurements
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, explosives, fire debris, trace evidence, or entomology in order to better classify and or differentiate questioned samples with known samples. The advancement of chemometric methods is of interest to forensic
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are often destructive, insufficient in resolution and sensitivity, and are subject to bias inherent in the measurement process. New methods for quantitative, in situ characterization are essential for gaining
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with stable isotopes such as 2 H, 13 C, 15 N, and 18 O is an important tool for structural and bioanalytical methods such as nuclear magnetic resonance (NMR), small angle neutron scattering (SANS), and