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imaging experiments to assess cell response, and developing quantitative image analysis methods. References Sisan D.R., et al. (2012) Predicting rates of cell state change due to stochastic fluctuations
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distribution of nanomaterials, and to study the fate of nanomaterials in the environment or in biological systems. key words Buckeyballs; Compositional imaging; Metals in nanomaterials; Nanomaterials
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approval, we seek to develop methods to measure local stress states in benchmark constriction-flow geometries that lead to blood damage. For example, we seek improvements in flow-field imaging, flow
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more complex for CR-PFM than quasi-static PFM. Our project is aimed at establishing CR-PFM as a technique for quantitative imaging of bias-induced strain, and for measuring frequency dependent responses
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properties such as electron-based spectroscopies, nanometer-scale imaging with energy filtering using a photoemission electron microscope (PEEM), and other optical measurements. Research is done in close
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. This opportunity focuses on the development of new device technologies (microfluidic enclosures, environmental control, and imaging capabilities) to manipulate external cues and monitor the feedback mechanisms
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NIST only participates in the February and August reviews. As of today, there is a plethora of cyber-physical instruments consisting of physical sensing (e.g., microscopy imaging) and cyber (digital
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of the non-classical light from a single solid-state quantum emitter, Physical Review Letters 109: 163601, 2012 O'Neill K, Lyons SK, Gallagher WM, Curran KM, Annette T. Byrne AT: Bioluminescent imaging: a
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over time. Stem cell populations can be highly heterogeneous and can exhibit complex responses. Using quantitative imaging data on large numbers of live cells over time, we can construct potential
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. Applications will include benchmarking, verification, and error analysis of magnetic resonance imaging simulators and electromagnetic scattering codes. References Vico F, Gimbutas Z, et al: IEEE Transactions