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D-Index & Metrics

Electronics and Electrical Engineering

D-Index
50
Citations
7980
World Ranking
2857
National Ranking
1076

Overview

Richard P. Schneider is affiliated with Infinera in the United States. Their research spans multiple disciplines within medicine and neuroscience, with a focus on imaging techniques and neuroinflammation.

The scientist's publication record includes papers covering a wide range of topics related to neuroimaging and brain function. Recent notable papers include:

  • Translational value of choroid plexus imaging for tracking neuroinflammation in mice and humans, 2021, Proceedings of the National Academy of Sciences
  • Combined resting state-fMRI and calcium recordings show stable brain states for task-induced fMRI in mice under combined ISO/MED anesthesia, 2021, NeuroImage
  • Multiparametric MRI for characterization of the tumour microenvironment, 2024, Nature Reviews Clinical Oncology
  • CD8+ T-Lymphocyte-Driven Limbic Encephalitis Results in Temporal Lobe Epilepsy, 2020, Annals of Neurology
  • Impact of hydroxytyrosol on stroke: tracking therapy response on neuroinflammation and cerebrovascular parameters using PET-MR imaging and on functional outcomes, 2021, Theranostics

The scientist collaborates frequently with several coauthors, including Lydia Wachsmuth, Bastian Maus, Max Masthoff, Moritz Wildgruber, and Verena Hoerr.

Publications by Richard P. Schneider appear regularly in the following venues:

  • Proceedings on CD-ROM - International Society for Magnetic Resonance in Medicine. Scientific Meeting and Exhibition/Proceedings of the International Society for Magnetic Resonance in Medicine, Scientific Meeting and Exhibition
  • bioRxiv (Cold Spring Harbor Laboratory)
  • Magnetic Resonance Materials in Physics Biology and Medicine
  • Magnetic Resonance in Medicine
  • RöFo - Fortschritte auf dem Gebiet der Röntgenstrahlen und der bildgebenden Verfahren

The main fields of study are Medicine and Neuroscience, with a strong emphasis on subfields such as Radiology, Nuclear Medicine and Imaging, Neurology, Cognitive Neuroscience, Materials Chemistry, and Cellular and Molecular Neuroscience.

The central topics of their research include:

  • Advanced MRI Techniques and Applications
  • MRI in cancer diagnosis
  • Functional Brain Connectivity Studies
  • Medical Imaging Techniques and Applications
  • Lanthanide and Transition Metal Complexes
  • Neuroinflammation and Neurodegeneration Mechanisms
  • Advanced Neuroimaging Techniques and Applications

Best Publications

  • Selectively oxidised vertical cavity surface emitting lasers with 50% power conversion efficiency

    K. L. Lear;Kent D Choquette;R. P. Schneider;S. P. Kilcoyne

  • Large-scale photonic integrated circuits

    R. Nagarajan;C.H. Joyner;R.P. Schneider;J.S. Bostak

  • Low threshold voltage vertical-cavity lasers fabricated by selective oxidation

    K.D. Choquette;R.P. Schneider;K.L. Lear;K.M. Geib

  • MONOLITHIC TRANSMITTER PHOTONIC INTEGRATED CIRCUIT (TxPIC) WITH INTEGRATED OPTICAL COMPONENTS IN CIRCUIT SIGNAL CHANNELS

    David F. Welch;Vincent G. Dominic;Fred A. Kish;Mark J. Missey

  • Gain-dependent polarization properties of vertical-cavity lasers

    K.D. Choquette;R.P. Schneider;K.L. Lear;R.E. Leibenguth

  • Efficient semiconductor light-emitting device and method

    Kent D. Choquette;Kevin L. Lear;Richard P. Schneider

  • High-frequency modulation of oxide- confined vertical cavity surface emitting lasers

    K. L. Lear;A. Mar;Kent D Choquette;S. P. Kilcoyne

  • InP Photonic Integrated Circuits

    R Nagarajan;M Kato;J Pleumeekers;P Evans

  • Fabrication and performance of selectively oxidized vertical-cavity lasers

    K.D. Choquette;K.L. Lear;R.P. Schneider;K.M. Geib

  • Epitaxial material to be grown sideways in trenches and its manufacture

    Changhua Chen;Yong Chen;Scott W Corzine;R Scott Kern

  • Current Status of Large-Scale InP Photonic Integrated Circuits

    F. A. Kish;D. Welch;R. Nagarajan;J. L. Pleumeekers

  • Cavity characteristics of selectively oxidized vertical‐cavity lasers

    Kent D. Choquette;K. L. Lear;R. P. Schneider;K. M. Geib

  • GaN-Based Light Emitting Diodes with Tunnel Junctions

    Tetsuya Takeuchi;Ghulam Hasnain;Scott Corzine;Mark Hueschen

  • Dislocation reduction in GaN thin films via lateral overgrowth from trenches

    Y. Chen;R. Schneider;S. Y. Wang;R. S. Kern

  • A quasicontinuous wave, optically pumped violet vertical cavity surface emitting laser

    Y.-K. Song;H. Zhou;M. Diagne;A. V. Nurmikko

  • Microstructure of laterally oxidized AlxGa1−xAs layers in vertical‐cavity lasers

    R. D. Twesten;D. M. Follstaedt;Kent D Choquette;R. P. Schneider;R. P. Schneider

  • Resonant-cavity InGaN quantum-well blue light-emitting diodes

    Y.-K. Song;M. Diagne;H. Zhou;A. V. Nurmikko

  • Visible-wavelength semiconductor lasers and arrays

    Richard P. Schneider;Mary H. Crawford

  • Vertical cavity surface emitting lasers with 21% efficiency by metalorganic vapor phase epitaxy

    K.L. Lear;R.P. Schneider;K.D. Choquette;S.P. Kilcoyne

  • Modal analysis of a small surface emitting laser with a selectively oxidized waveguide

    K. L. Lear;K. D. Choquette;R. P. Schneider;S. P. Kilcoyne

  • Large-scale photonic integrated circuits

    J. Pleumeekers;M. Kato;P. Evans;S. Corzine

  • Gain-dependent polarization properties of vertical-cavity lasers

    K.D. Choquette;K.L. Lear;R.P. Schneider;R.E. Leibenguth

Frequent Co-Authors

Kent D. Choquette
Kent D. Choquette University of Illinois at Urbana-Champaign
Kevin L. Lear
Kevin L. Lear Colorado State University
Fred A. Kish
Fred A. Kish Infinera (United States)
Radhakrishnan L. Nagarajan
Radhakrishnan L. Nagarajan Marvell Technology
David F. Welch
David F. Welch Infinera (United States)
A.G. Dentai
A.G. Dentai Infinera (United States)
Ian H. White
Ian H. White University of Bath
David M. Follstaedt
David M. Follstaedt Sandia National Laboratories
Richard V. Penty
Richard V. Penty University of Cambridge
Mary H. Crawford
Mary H. Crawford Sandia National Laboratories

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