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Neuroscience

D-Index
51
Citations
17083
World Ranking
5437
National Ranking
2420

Overview

David A. Feinberg is affiliated with the University of California, Berkeley in the United States. Their research focuses primarily on medicine and neuroscience, with a strong emphasis on radiology, nuclear medicine, and imaging. Additional subfields include cognitive neuroscience, neurology, atomic and molecular physics and optics, as well as spectroscopy.

The scientist's main topics of work encompass advanced MRI techniques and applications, functional brain connectivity studies, and advanced neuroimaging techniques and applications. Other relevant areas include medical imaging techniques and applications, atomic and subatomic physics research, advanced NMR techniques and applications, and neurological disorders and treatments.

David A. Feinberg has contributed to the following recent publications:

  • Next-generation MRI scanner designed for ultra-high-resolution human brain imaging at 7 Tesla (2023), published in Nature Methods
  • Comparison of BOLD and CBV using 3D EPI and 3D GRASE for cortical layer functional MRI at 7 T (2020), published in Magnetic Resonance in Medicine
  • Peripheral nerve stimulation informed design of a high-performance asymmetric head gradient coil (2023), published in Magnetic Resonance in Medicine
  • Highly accelerated submillimeter resolution 3D GRASE with controlled blurring in -weighted functional MRI at 7 Tesla: A feasibility study (2020), published in Magnetic Resonance in Medicine
  • A 128-channel receive array for cortical brain imaging at 7 T (2023), published in Magnetic Resonance in Medicine

Frequent coauthors include:

  • Alexander Beckett
  • An T. Vu
  • Laurentius Huber
  • J. Samantha
  • G Shajan

The most common publication venues where David A. Feinberg's work appears are:

  • 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 (15 publications)
  • Magnetic Resonance in Medicine (7 publications)
  • bioRxiv (Cold Spring Harbor Laboratory) (2 publications)
  • Nature Methods (1 publication)
  • Magnetic Resonance Materials in Physics Biology and Medicine (1 publication)

Best Publications

  • The Human Connectome Project: A data acquisition perspective

    D. C. Van Essen;Kamil Ugurbil;Edward J Auerbach

  • Resting-state fMRI in the Human Connectome Project

    S M Smith;C F Beckmann;J Andersson;E J Auerbach

  • Multiplexed echo planar imaging for sub-second whole brain fmri and fast diffusion imaging

    David A. Feinberg;David A. Feinberg;Steen Moeller;Stephen M. Smith;Edward J Auerbach

  • Advances in diffusion MRI acquisition and processing in the Human Connectome Project.

    Stamatios N. Sotiropoulos;Saâd Jbabdi;Junqian Xu;Jesper L. R. Andersson

  • Pushing spatial and temporal resolution for functional and diffusion MRI in the Human Connectome Project

    Kamil Ugurbil;Junqian Xu;Edward J. Auerbach;Steen Moeller

  • Temporally-independent functional modes of spontaneous brain activity

    Stephen M. Smith;Karla L. Miller;Steen Moeller;Junqian Xu

  • Evaluation of slice accelerations using multiband echo planar imaging at 3 T.

    Junqian Xu;Steen Moeller;Edward J. Auerbach;John P. Strupp

  • Ultra-fast MRI of the human brain with simultaneous multi-slice imaging.

    David A. Feinberg;Kawin Setsompop

  • Human brain motion and cerebrospinal fluid circulation demonstrated with MR velocity imaging.

    D A Feinberg;A S Mark

  • GRASE (Gradient-and Spin-Echo) imaging: A novel fast MRI technique

    Koichi Oshio;David A. Feinberg

  • Single-shot 3D imaging techniques improve arterial spin labeling perfusion measurements

    Matthias Günther;Koichi Oshio;David A. Feinberg

  • Halving MR imaging time by conjugation: demonstration at 3.5 kG.

    D A Feinberg;J D Hale;J C Watts;L Kaufman

  • Inner volume MR imaging: technical concepts and their application.

    D A Feinberg;J C Hoenninger;L E Crooks;L Kaufman

  • GRASE (gradient- and spin-echo) MR imaging: a new fast clinical imaging technique

    David A. Feinberg;Koichi Oshio

  • Effects of image reconstruction on fiber orientation mapping from multichannel diffusion MRI: reducing the noise floor using SENSE.

    S. N. Sotiropoulos;Steen Moeller;S. Jbabdi;J. Xu

  • Real-time magnetic resonance imaging of laser heat deposition in tissue.

    Alan R. Bleier;Ferenc A. Jolesz;Mark S. Cohen;Robert M. Weisskoff

  • Arterial spin labeling MRI study of age and gender effects on brain perfusion hemodynamics.

    Yinan Liu;Xiaoping Zhu;David Feinberg;Matthias Guenther

  • Layer-specific fMRI reflects different neuronal computations at different depths in human V1.

    Cheryl A. Olman;Noam Harel;David A. Feinberg;Sheng He

  • Mapping the Organization of Axis of Motion Selective Features in Human Area MT Using High-Field fMRI

    Jan Zimmermann;Rainer Goebel;Rainer Goebel;Federico De Martino;Federico De Martino;Pierre-Francois van de Moortele

  • The rapid development of high speed, resolution and precision in fMRI.

    David A. Feinberg;Essa Yacoub

Frequent Co-Authors

Essa Yacoub
Essa Yacoub University of Minnesota
Kamil Ugurbil
Kamil Ugurbil University of Minnesota
Junqian Xu
Junqian Xu Icahn School of Medicine at Mount Sinai
Stephen M. Smith
Stephen M. Smith University of Oxford
Matthew F. Glasser
Matthew F. Glasser Washington University in St. Louis
Karla L. Miller
Karla L. Miller University of Oxford
Timothy E.J. Behrens
Timothy E.J. Behrens University of Oxford
Federico De Martino
Federico De Martino Maastricht University
Peter Jezzard
Peter Jezzard University of Oxford
Mark W. Woolrich
Mark W. Woolrich University of Oxford

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