World's Best Scientists 2026 revealed!

D-Index & Metrics

Biology and Biochemistry

D-Index
65
Citations
17788
World Ranking
9044
National Ranking
691

Overview

Michael Bate is affiliated with the University of Cambridge in the United Kingdom and has contributed extensively to the field of Mathematics, with a research focus spanning several subfields. Their work encompasses areas such as Mathematical Physics, Geometry and Topology, Discrete Mathematics and Combinatorics, Algebra and Number Theory, and Ecology, Evolution, Behavior and Systematics.

The main topics of their research include Advanced Algebra and Geometry, Finite Group Theory Research, Algebraic Geometry and Number Theory, Algebraic structures and combinatorial models, Advanced Topics in Algebra, Coleoptera: Cerambycidae studies, and Forest Insect Ecology and Management.

Michael Bate has published a significant number of papers, with recent publications including the following:

  • Overgroups of regular unipotent elements in reductive groups, 2022, Forum of Mathematics Sigma
  • Cutoff for a one-sided transposition shuffle, 2021, The Annals of Applied Probability
  • Irreducible modules for pseudo-reductive groups, 2021, Journal of the European Mathematical Society
  • ON RELATIVE COMPLETE REDUCIBILITY, 2020, The Quarterly Journal of Mathematics
  • A construction of pseudo-reductive groups with non-reduced root system, 2022, arXiv (Cornell University)

The venues where Michael Bate frequently publishes include arXiv (Cornell University), HAL (Le Centre pour la Communication Scientifique Directe), Pacific Journal of Mathematics, Forum of Mathematics Sigma, and The Annals of Applied Probability.

The scientist collaborates regularly with several co-authors, including:

  • Benjamin Martin
  • Gerhard Röhrle
  • Sören Böhm
  • Gerhard Roehrle
  • David I. Stewart

Best Publications

  • The development of Drosophila melanogaster

    Michael Bate;Alfonso Martinez Arias

  • Spatial and temporal patterns of neurogenesis in the central nervous system of Drosophila melanogaster

    James W. Truman;Michael Bate

  • Altered electrical properties in Drosophila neurons developing without synaptic transmission

    Richard A. Baines;Jay P. Uhler;Annemarie Thompson;Sean T. Sweeney

  • From grasshopper to Drosophila: a common plan for neuronal development

    John B. Thomas;Michael J. Bastiani;Michael Bate;Corey S. Goodman

  • The embryonic development of larval muscles in Drosophila

    M. Bate

  • twist: a myogenic switch in Drosophila.

    Mary K. Baylies;Michael Bate

  • Drosophila Dumbfounded: a myoblast attractant essential for fusion

    Mar Ruiz-Gómez;Nikola Coutts;Alivia Price;Michael Victor Taylor

  • The Drosophila Neuromuscular Junction: A Model System for Studying Synaptic Development and Function

    Haig Keshishian;Kendal Broadie;Akira Chiba;Michael Bate

  • Myogenesis: A View from Drosophila

    Mary K Baylies;Michael Bate;Mar Ruiz Gomez

  • The Origin, Location, and Projections of the Embryonic Abdominal Motorneurons of Drosophila

    Matthias Landgraf;Torsten Bossing;Gerd M. Technau;Michael Bate

  • Development of the embryonic neuromuscular synapse of Drosophila melanogaster

    Kendal S. Broadie;Michael Bate

  • A wingless-dependent polar coordinate system in Drosophila imaginal discs.

    Juan Pablo Couso;Michael Bate;Alfonso Martínez-Arias

  • Mutations in a novel gene, myoblast city, provide evidence in support of the founder cell hypothesis for Drosophila muscle development

    Emma Rushton;Rachel Drysdale;Susan M. Abmayr;Alan M. Michelson

  • dpp induces mesodermal gene expression in Drosophila

    Staehling-Hampton K;Hoffmann Fm;Baylies Mk;Rushton E

  • Expression of a MyoD family member prefigures muscle pattern in Drosophila embryos.

    A M Michelson;S M Abmayr;M Bate;A M Arias

  • The expression of three members of the achaete-scute gene complex correlates with neuroblast segregation in Drosophila

    Carlos V. Cabrera;Alfonso Martinez-Arias;Michael Bate

  • Development of the indirect flight muscles of Drosophila.

    J. Fernandes;M. Bate;K. Vijayraghavan

  • Lethal of scute, a proneural gene, participates in the specification of muscle progenitors during Drosophila embryogenesis.

    Ana Carmena;Michael Bate;Fernando Jimenez

  • Embryonic assembly of a central pattern generator without sensory input

    Maximiliano L. Suster;Maximiliano L. Suster;Michael Bate

  • Segregation of myogenic lineages in Drosophila requires Numb

    M. Gomez Ruiz;M. Bate

Frequent Co-Authors

Kendal Broadie
Kendal Broadie Vanderbilt University
Corey S. Goodman
Corey S. Goodman University of California, Berkeley
K. VijayRaghavan
K. VijayRaghavan National Centre for Biological Sciences
Nicholas H. Brown
Nicholas H. Brown University of Cambridge
Nicholas C. Spitzer
Nicholas C. Spitzer University of California, San Diego
Berthold Hedwig
Berthold Hedwig University of Cambridge
André Fiala
André Fiala University of Göttingen
Akira Chiba
Akira Chiba Tokyo Institute of Technology
Herbert Jäckle
Herbert Jäckle Max Planck Society
Gerald M. Rubin
Gerald M. Rubin Howard Hughes Medical Institute

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