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Chemistry

D-Index
65
Citations
16174
World Ranking
7613
National Ranking
2228

Overview

Gerald M. Rosen is affiliated with the University of Maryland, Baltimore in the United States. Their research spans medicine and biochemistry, genetics, and molecular biology, with publications reflecting interdisciplinary approaches within these fields.

Their work covers multiple subfields including biophysics, organic chemistry, cognitive neuroscience, clinical psychology, and psychiatry and mental health. This diverse scope emphasizes a focus on both physical and psychological aspects of medical science.

Key research topics explored by Gerald M. Rosen include:

  • Electron Spin Resonance Studies
  • Hemoglobin structure and function
  • Psychotherapy Techniques and Applications
  • Pain Management and Placebo Effect
  • Lanthanide and Transition Metal Complexes
  • Synthesis and Characterization of Heterocyclic Compounds
  • Memory and Neural Mechanisms

Some of their recent papers are:

  • "Tapping Away at a Misleading Meta-analysis", 2020, The Journal of Nervous and Mental Disease
  • "Revisiting the Origins of EMDR", 2023, Journal of Contemporary Psychotherapy
  • "Atypical Neuroleptic Malignant Syndrome in a COVID-19 Intensive Care Unit", 2022, Cureus
  • "Corrigendum Compounds Errors and Again Fails to Support the Specificity of Acupoint Tapping", 2022, The Journal of Nervous and Mental Disease
  • "Spin-trapping and Human Neutrophils: Limits of detection of hydroxyl radical", 2023, UNC Libraries

Gerald M. Rosen has published frequently in the following venues:

  • UNC Libraries
  • Journal of Contemporary Psychotherapy
  • The Journal of Nervous and Mental Disease
  • Applied Magnetic Resonance
  • Cureus

They have collaborated mainly with the following researchers:

  • Glen I. Spielmans
  • Sovitj Pou
  • Myron S. Cohen
  • B E Britigan
  • Mitasha S. Palha

Best Publications

  • Spin trapping of superoxide and hydroxyl radical: Practical aspects

    Eli Finkelstein;Gerald M. Rosen;Elmer J. Rauckman

  • Generation of superoxide by purified brain nitric oxide synthase.

    S Pou;W S Pou;D S Bredt;S H Snyder

  • Spin trapping. Kinetics of the reaction of superoxide and hydroxyl radicals with nitrones

    Eli Finkelstein;Gerald M. Rosen;Elmer J. Rauckman

  • Free radicals and phagocytic cells

    Gerald M. Rosen;Sovitj Pou;Carroll L. Ramos;Myron S. Cohen

  • Superoxide Dismutase and Catalase Conjugated to Polyethylene Glycol Increases Endothelial Enzyme Activity and Oxidant Resistance

    J S Beckman;R L Minor;C W White;J E Repine

  • Oxygen Reduction by Nitric-oxide Synthases*

    Dennis J Stuehr;Sovitj Pou;Gerald M. Rosen

  • Spin trapping of superoxide.

    Eli Finkelstein;Gerald M. Rosen;Elmer J. Rauckman;John Paxton

  • Detection of superoxide generated by endothelial cells

    Gerald M. Rosen;Bruce A. Freeman

  • Production of hydroxyl radical by decomposition of superoxide spin-trapped adducts.

    E Finkelstein;G M Rosen;E J Rauckman

  • [23] Spin trapping of superoxide and hydroxyl radicals

    Unknown

  • Spin trapping evidence for myeloperoxidase-dependent hydroxyl radical formation by human neutrophils and monocytes.

    Carroll L. Ramos;Sovitj Pou;Bradley E. Britigan;Myron S. Cohen

  • Mechanism of superoxide generation by neuronal nitric-oxide synthase.

    Sovitj Pou;Lori Keaton;Wanida Surichamorn;Gerald M. Rosen

  • Do human neutrophils make hydroxyl radical? Determination of free radicals generated by human neutrophils activated with a soluble or particulate stimulus using electron paramagnetic resonance spectrometry.

    B E Britigan;G M Rosen;Y Chai;M S Cohen

  • Cocaine-mediated hepatotoxicity a critical review

    Michelle W. Kloss;Gerald M. Rosen;Elmer J. Rauckman

  • Nitroxides as potential contrast enhancing agents for MRI application: influence of structure on the rate of reduction by rat hepatocytes, whole liver homogenate, subcellular fractions, and ascorbate.

    John F. W. Keana;Sovitj Pou;Gerald M. Rosen

  • Baicalein attenuates oxidant stress in cardiomyocytes.

    Zuo Hui Shao;Terry L. Vanden Hoek;Yimin Qin;Lance B. Becker

  • Problems associated with spin trapping oxygen-centered free radicals in biological systems.

    Sovitj Pou;Daniel J. Hassett;Daniel J. Hassett;Bradley E. Britigan;Bradley E. Britigan;Myron S. Cohen;Myron S. Cohen

  • Mechanism of free-radical generation by nitric oxide synthase.

    Gerald M. Rosen;Pei Tsai;Sovitj Pou

  • A method for the detection of superoxide in biological systems

    Gerald M. Rosen;Eli Finkelstein;Elmer J. Rauckman

  • Device with polymeric coating containing a nitrosyl-containing organometallic compound which releases nitric oxide and inhibits platelet aggregation

    Herzog William R;Pou Sovitj;Rosen Gerald M;Zhao Yi-Ju

  • Spin traps: in vitro toxicity and stability of radical adducts.

    Nadeem Khan;Carmen M. Wilmot;Gerald M. Rosen;Eugene Demidenko

  • Spin Trapping of the Primary Radical Involved in the Activation of the Carcinogen N-Hydroxy-2-acetylaminofluorene by Cumene Hydroperoxide-Hematin

    Gerald M. Rosen;Elmer J. Rauckman

Frequent Co-Authors

Myron S. Cohen
Myron S. Cohen University of North Carolina at Chapel Hill
Daniel J. Hassett
Daniel J. Hassett University of Cincinnati Medical Center
Sandra S. Eaton
Sandra S. Eaton University of Denver
Gareth R. Eaton
Gareth R. Eaton University of Denver
Bradley E. Britigan
Bradley E. Britigan University of Nebraska Medical Center
Alan S. Cross
Alan S. Cross University of Maryland, Baltimore
Peter Y. Zavalij
Peter Y. Zavalij University of Maryland, College Park
John F. W. Keana
John F. W. Keana University of Oregon
Robert V. Mulkern
Robert V. Mulkern Boston Children's Hospital
Bruce H. Robinson
Bruce H. Robinson University of Washington

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