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Walter Stühmer

Walter Stühmer

D-Index & Metrics

Biology and Biochemistry

D-Index
77
Citations
23685
World Ranking
4733
National Ranking
349

Overview

Walter Stühmer is affiliated with the Max Planck Society in Germany and has contributed to the fields of neuroscience, biochemistry, genetics, and molecular biology. Their research spans several subfields, including molecular biology, cellular and molecular neuroscience, biomedical engineering, cardiology and cardiovascular medicine, and cognitive neuroscience.

The main topics in Walter Stühmer's work include:

  • Neuroscience and neuropharmacology research
  • Ion channel regulation and function
  • Cardiac electrophysiology and arrhythmias
  • Advanced chemical sensor technologies
  • Identification and quantification in food
  • Neural dynamics and brain function
  • Photoreceptor and optogenetics research

They have published multiple papers in various scientific venues, emphasizing ion channels and neuroscience. Their recent papers include:

  • "Voltage-gated potassium channels (Kv) in GtoPdb v.2023.1" (2023), published in IUPHAR/BPS Guide to Pharmacology CITE
  • "Theta activity paradoxically boosts gamma and ripple frequency sensitivity in prefrontal interneurons" (2021), published in Proceedings of the National Academy of Sciences
  • "Voltage-gated potassium channels (Kv) in GtoPdb v.2021.3" (2021), published in IUPHAR/BPS Guide to Pharmacology CITE
  • "SK3-overexpression drives sex-dimorphic working and social memory impairment in mice" (2020), published in bioRxiv (Cold Spring Harbor Laboratory)
  • "The Utilization of the SaLux19 -Based LAMP Assay for the Rapid and Sensitive Identification of Minute Amounts of Biological Material" (2024), published in Preprints.org

Walter Stühmer frequently collaborates with several co-authors, including:

  • Luis A. Pardo
  • Bernard Attali
  • M. Hunter Giese
  • Stephan Grissmer
  • George A. Gutman

Their most common publication venues consist of:

  • IUPHAR/BPS Guide to Pharmacology CITE
  • Proceedings of the National Academy of Sciences
  • bioRxiv (Cold Spring Harbor Laboratory)
  • Preprints.org
  • Life

Walter Stühmer's body of work is characterized by its focus on the molecular mechanisms underlying ion channel function and neuronal signaling, as well as applications in cardiac electrophysiology and sensory technologies. This multidisciplinary approach integrates experimental research with advanced methodological developments in biomedical sciences.

Best Publications

  • Structural parts involved in activation and inactivation of the sodium channel.

    Walter Stühmer;Franco Conti;Harukazu Suzuki;Xiaodong Wang

  • International Union of Pharmacology. LIII. Nomenclature and Molecular Relationships of Voltage-Gated Potassium Channels

    Aguan D. Wei;George A. Gutman;Richard W Aldrich;K. George Chandy

  • Calcium channel characteristics conferred on the sodium channel by single mutations.

    Stefan H. Heinemann;Heinrich Terlau;Walter Stühmer;Keiji Imoto

  • Molecular basis of functional diversity of voltage-gated potassium channels in mammalian brain

    W. Stühmer;J. P. Ruppersberg;K. H. Schröter;B. Sakmann

  • Primary structure and functional expression from complementary DNA of the rod photoreceptor cyclic GMP-gated channel

    U. B. Kaupp;T. Niidome;T. Tanabe;S. Terada

  • IRK(1–3) and GIRK(1–4) Inwardly Rectifying K+Channel mRNAs Are Differentially Expressed in the Adult Rat Brain

    Christine Karschin;Elke Dißmann;Walter Stühmer;Andreas Karschin

  • Mapping the site of block by tetrodotoxin and saxitoxin of sodium channel II.

    Heinrich Terlau;Stefan H. Heinemann;Walter Stühmer;Michael Pusch

  • Electrophysiological recording from Xenopus oocytes.

    Walter Stühmer

  • Oncogenic potential of EAG K(+) channels.

    Luis A. Pardo;Donato del Camino;Araceli Sánchez;Frauke Alves

  • P2X4: an ATP-activated ionotropic receptor cloned from rat brain

    Florentina Soto;Miguel Garcia-Guzman;Juan Manuel Gomez-Hernandez;Michael Hollmann

  • Depletion of InsP3 stores activates a Ca2+ and K+ current by means of a phosphatase and a diffusible messenger

    Anant B. Parekh;Heinrich Terlau;Walter Stühmer

  • The roles of K+ channels in cancer

    Luis A. Pardo;Walter Stühmer

  • A single point mutation confers tetrodotoxin and saxitoxin insensitivity on the sodium channel II.

    Masaharu Noda;Harukazu Suzuki;Harukazu Suzuki;Shosaku Numa;Walter Stühmer

  • Potassium channels in cell cycle and cell proliferation

    Diana Urrego;Adam P. Tomczak;Farrah Zahed;Walter Stühmer

  • Strategy for rapid immobilization of prey by a fish-hunting marine snail

    Heinrich Terlau;Ki Joon Shon;Ki Joon Shon;Michelle Grilley;Martin Stocker

  • Primary structure and functional expression of a high voltage activated calcium channel from rabbit lung

    Martin Biel;Peter Ruth;Eva Bosse;Roger Hullin

  • CHARACTERIZATION OF RECOMBINANT HUMAN P2X4 RECEPTOR REVEALS PHARMACOLOGICAL DIFFERENCES TO THE RAT HOMOLOGUE

    Miguel Garcia-Guzman;Florentina Soto;Juan Manuel Gomez-Hernandez;Per-Eric Lund

  • Patch-clamping of the inner mitochondrial membrane reveals a voltage-dependent ion channel.

    Maria Catia Sorgato;B. U. Keller;W. Stuhmer

  • Ether-à-go-go encodes a voltage-gated channel permeable to K+ and Ca2+ and modulated by cAMP.

    Andrea Brüggemann;Luis A. Pardo;Walter Stühmer;Olaf Pongs

  • Overexpression of Eag1 potassium channels in clinical tumours

    Bernhard Hemmerlein;Rüdiger M Weseloh;Fernanda Mello de Queiroz;Hendrik Knötgen

Frequent Co-Authors

Olaf Pongs
Olaf Pongs Universität Hamburg
Anant B. Parekh
Anant B. Parekh University of Oxford
Shosaku Numa
Shosaku Numa Kyoto University
Hannelore Ehrenreich
Hannelore Ehrenreich Central Institute of Mental Health
Fred Wolf
Fred Wolf Max Planck Society
Bert Sakmann
Bert Sakmann Max Planck Society
Michael Pusch
Michael Pusch National Research Council (CNR)
Klaus-Armin Nave
Klaus-Armin Nave Max Planck Society
Nils Brose
Nils Brose Max Planck Society
Dalia Gordon
Dalia Gordon Weizmann Institute of Science

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