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Neuroscience

D-Index
67
Citations
11608
World Ranking
2944
National Ranking
285

Overview

Henry F. Bradford is affiliated with Imperial College London in the United Kingdom. Their body of work spans Mathematics and Computer Science, with publications distributed equally across these two main fields of study.

Bradford's research spans multiple subfields, most notably:

  • Computational Theory and Mathematics
  • Geometry and Topology
  • Discrete Mathematics and Combinatorics
  • Mathematical Physics
  • Artificial Intelligence

The primary topics their work addresses include:

  • Semigroups and automata theory
  • Finite Group Theory Research
  • Geometric and Algebraic Topology
  • Coding theory and cryptography
  • Graph theory and CDMA systems
  • Cellular Automata and Applications
  • Mathematical Dynamics and Fractals

Bradford has produced research papers published in diverse venues, with a concentration of work appearing on arXiv (Cornell University), accompanied by publications in peer-reviewed journals such as the Journal of Algebra and Mathematische Zeitschrift. Their most frequent publication venues are:

  • arXiv (Cornell University)
  • Journal of Algebra
  • Mathematische Zeitschrift

Selected recent papers include:

  • The length of mixed identities for finite groups, 2025, Journal of Algebra
  • Quantifying lawlessness in finitely generated groups, 2021, arXiv (Cornell University)
  • Controlling LEF growth in some group extensions, 2022, arXiv (Cornell University)
  • Topological full groups of minimal subshifts and quantifying local embeddings into finite groups, 2021, arXiv (Cornell University)
  • Quantifying local embeddings into finite groups, 2021, arXiv (Cornell University)

Frequent coauthors collaborating with Bradford include:

  • Andreas Thom
  • Francesco Fournier-Facio
  • Jakob Schneider
  • Daniele Dona

Best Publications

  • Glutamate, GABA and epilepsy

    H.F. Bradford

  • Glutamine--a major substrate for nerve endings.

    H. F. Bradford;H. K. Ward;A. J. Thomas

  • Glutamate release in experimental ischaemia of the retina: an approach using microdialysis.

    P. Louzada-Junior;J. J. Dias;W. F. Santos;J. J. Lachat

  • On glutaminase activity in mammalian synaptosomes

    H.F. Bradford;H.K. Ward

  • Metabolism of beds of mammalian cortical synaptosomes: response to depolarizing influences.

    J. S. Belleroche;H. F. Bradford

  • The kindled amygdala model of epilepsy: anticonvulsant action of amino acid antagonists.

    D.W. Peterson;J.F. Collins;H.F. Bradford

  • Respiration in vitro of synaptosomes from mammalian cerebral cortex.

    H. F. Bradford

  • METABOLISM OF GLUCOSE AND GLUTAMATE BY SYNAPTOSOMES FROM MAMMALIAN CEREBRAL CORTEX

    H. F. Bradford;A. J. Thomas

  • Depolarizing stimuli and the release of physiologically active amino acids from suspensions of mammalian synaptosomes.

    H. F. Bradford;G. W. Bennett;A. J. Thomas

  • Biochemical evidence for the presence of presynaptic receptors on dopaminergic nerve terminals

    J. De Belleroche;H.F. Bradford

  • Metabolic response of synaptosomes to electrical stimulation: Release of amino acids

    H.F. Bradford

  • AMINO ACIDS IN SYNAPTIC VESICLES FROM MAMMALIAN CEREBRAL CORTEX: A REAPPRAISAL

    J. S. De Belleroche;H. F. Bradford

  • Glutamine and Glucose as Precursors of Transmitter Amino Acids: Ex Vivo Studies

    H. K. Ward;C. M. Thanki;H. F. Bradford

  • Co-release of glutamate and aspartate from cholinergic and GABAergic synaptosomes.

    Maureen Docherty;H. F. Bradford;J.-Y. Wu

  • Actions of Tremorgenic Fungal Toxins on Neurotransmitter Release

    P. J. Norris;C. C. T. Smith;J. De Belleroche;H. F. Bradford

  • The inhibitory effect of sodium n-dipropyl acetate on the degradative enzymes of the GABA shunt.

    P.K.P. Harvey;H.F. Bradford;A.N. Davison

  • Excitatory amino acid neurotransmitters in the corticostriate pathway: studies using intracerebral microdialysis in vivo.

    A. M. J. Young;H. F. Bradford

  • Inhibition of the development of electrical kindling of the prepyriform cortex by daily focal injections of excitatory amino acid antagonists

    Martin J. Croucher;Henry F. Bradford;David C. Sunter;Jeffrey C. Watkins

  • Specific release of endogenous glutamate from piriform cortex stimulated in vitro.

    H.F. Bradford;H.F. Bradford;C.D. Richards;C.D. Richards

  • PATTERNS OF AMINO ACID RELEASE FROM NERVE-ENDINGS ISOLATED FROM SPINAL CORD AND MEDULLA

    R. H. Osborne;H. F. Bradford;D. G. Jones

  • On the site of origin of transmitter amino acids released by depolarization of nerve terminals in vitro.

    J S De Belleroche;H F Bradford

Frequent Co-Authors

Tong H. Joh
Tong H. Joh Cornell University
Peter R. Dodd
Peter R. Dodd University of Queensland
Bruce S. McEwen
Bruce S. McEwen Rockefeller University
Donald J. Reis
Donald J. Reis Cornell University

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