Sort by
Refine Your Search
-
Category
-
Country
-
Program
-
Field
-
pioneered the development of long-lived calibration surrogates for short-lived radiopharmaceuticals and continues to work to bring metrological rigor to pre-clinical and clinical molecular imaging. Our
-
development of the quantitative potential of LC/MS/MS and MALDI-TOF MS for the determination of proteins and peptides of clinical importance using proteomics approaches. Keywords Clinical diagnostics
-
possible over the necessary activity ranges for the disparate applications, while maintaining traceability to the SI with low overall uncertainty (~ 0.1 %). Longer-term plans include development of
-
@nist.gov 301.975.2600 Description Sorbent materials are candidates for many industrial and sustainable development applications, including carbon capture, hydrogen and methane storage, gas separation and
-
and evaluation of optical contrast of tissue-mimicking phantoms and physiologically relevant in vitro 3D cell cultures with controlled expressions of endogenous biomarkers; (4) development of
-
localization methods mature and critical technologies become more demanding. We lead the development of innovative standards and calibrations to achieve accuracy in localization microscopy [1, 2, 3], with
-
particle spectroscopy. In addition, the Associate will have opportunities for participation in instrument/technique development projects. Keywords Radionuclide metrology; Digital data acquisition
-
of powerful characterization techniques and reliability tests of materials under operational conditions improves fundamental understanding and accelerates development of highly-reliable materials and
-
competing performance goals. Achieving these goals requires the development and application of technologies, such as high performance building envelopes and advanced cooling and ventilating systems (e.g
-
unique possibilities for the development of next-generation correlations and prediction methods. The program will build on our existing efforts using Quantitative Structure-Property Relationship (QSPR