M
Margaret Brown
Researcher at University of Washington
Publications - 5
Citations - 395
Margaret Brown is an academic researcher from University of Washington. The author has contributed to research in topics: CD34 & Atmospheric convection. The author has an hindex of 5, co-authored 5 publications receiving 390 citations.
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Journal ArticleDOI
Evaluation and intercomparison of global atmospheric transport models using 222Rn and other short-lived tracers
Daniel J. Jacob,Michael J. Prather,Philip J. Rasch,Run-Lie Shia,Yves Balkanski,S. R. Beagley,Daniel Bergmann,W. T. Blackshear,Margaret Brown,Masaru Chiba,Martyn P. Chipperfield,J. de Grandpré,Jane Dignon,Johann Feichter,Christophe Genthon,William L. Grose,Prasad S. Kasibhatla,I. Köhler,Mark A. Kritz,K. S. Law,Joyce E. Penner,Michel Ramonet,Claire E. Reeves,D. A. Rotman,Deianeira Z. Stockwell,Peter van Velthoven,Gé Verver,Oliver Wild,Hu Yang,Peter H. Zimmermann +29 more
TL;DR: In this article, simulations of 222Rn and other short-lived tracers are used to evaluate and intercompare the representations of convective and synoptic processes in 20 global atmospheric transport models.
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Deduction of emissions of source gases using an objective inversion algorithm and a chemical transport model
TL;DR: In this paper, an inversion algorithm, constructed to deduce the emissions of a source gas required to produce a specified surface concentration, is applied to the observed surface concentrations of CFC 11, methylchloroform, and methane, using a two-dimensional chemical transport model.
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The singular value decomposition method applied to the deduction of the emissions and the isotopic composition of atmospheric methane
TL;DR: In this paper, the authors used the singular value decomposition (SVD) analysis to identify the spatial and temporal components of the isotopic ratio of the methane emissions distribution, quantifies the sensitivity of each component to errors in the observations, and predicts how many components must be retained to produce a modeled surface concentration consistent with the observations.
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Increase in atmospheric CHF2Cl (HCFC-22) over southern California from 1985 to 1990
TL;DR: In this article, column densities of CHF2Cl (HCFC-22) have been measured over Table Mountain Facility (TMF), Wrightwood, California (34.4 deg N) using the Atmospheric Trace Molecule Spectroscopy (ATMOS) Fourier-transform infrared (FTIR) spectrometer.
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A Novel Small Molecule E-Selectin Inhibitor GMI-1271 Blocks Adhesion of AML Blasts to E-Selectin and Mobilizes Blood Cells in Nodscid IL2Rgc−/− Mice Engrafted with Human AML
Sylvia Chien,Xin Zhao,Margaret Brown,Akanksha Saxena,John T. Patton,John L. Magnani,Pamela S. Becker +6 more
TL;DR: A change in morphology with binding of AML blasts to E-selectin coated plastic is observed, in that they elongate, become more cuboidal and less reflective, in contrast to the non-adherent cells, which remain round and refractile.