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in magnetic resonance imaging (MRI), hyperthermia for cancer and arthritis treatment, and drug delivery. However, the fundamental characterization methods for magnetic nanoparticles-both individually
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and cannot be accessed in this way. We have developed a new, prototype Couette shear cell that allows measurements in the 1-2 plane with the additional ability of resolving position within the gap
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on incorporating novel, high-throughput forms of single particle EV detection schemes involving nano-flow cytometry, microfluidics, plasmonic or fluorescence imaging using nanoparticles, droplet digital PCR and/or
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Description The National Institute of Standards and Technology (NIST) is developing next-generation microfabricated magnetic devices and magnetic resonance imaging (MRI) contrast agents and sensors based
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NIST only participates in the February and August reviews. The modern transmission electron microscope (TEM) is capable of atomic-resolution structural and chemical imaging. However, such data
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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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Digital Image Correlation (DIC) to study the non-equilibrium dynamic response of soft polymers and to explore non-uniaxial stress and strain states by testing novel sample geometries that otherwise could
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-form dual-comb spectroscopy for compressive sensing and imaging”, Nat. Photonics, 18, 1312 (2024) E.D. Caldwell, et.al.,”Quantum-limited optical time transfer for future geosynchronous Links”, Nature 618
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distribution of nanomaterials, and to study the fate of nanomaterials in the environment or in biological systems. Keywords Buckeyballs; Compositional imaging; Metals in nanomaterials; Nanomaterials
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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