World's Best Scientists 2026 revealed!

D-Index & Metrics

Neuroscience

D-Index
49
Citations
10873
World Ranking
5914
National Ranking
2595

Best Publications

  • Sodium channel Na(v)1.6 is localized at nodes of ranvier, dendrites, and synapses.

    John H. Caldwell;Kristin L. Schaller;Robert S. Lasher;Elior Peles

  • Identification of PN1, a predominant voltage-dependent sodium channel expressed principally in peripheral neurons

    Juan J. Toledo-Aral;Brenda L. Moss;Brenda L. Moss;Zhi Jun He;Adam G. Koszowski

  • Compact myelin dictates the differential targeting of two sodium channel isoforms in the same axon.

    Tatiana Boiko;Matthew N. Rasband;S.Rock Levinson;John H. Caldwell

  • Induction of sodium channel clustering by oligodendrocytes

    M. R. Kaplan;A. Meyer-Franke;S. Lambert;V. Bennett

  • Functional Specialization of the Axon Initial Segment by Isoform-Specific Sodium Channel Targeting

    Tatiana Boiko;Audra Van Wart;John H. Caldwell;S. Rock Levinson

  • Differential Control of Clustering of the Sodium Channels Nav1.2 and Nav1.6 at Developing CNS Nodes of Ranvier

    Miriam R. Kaplan;Min Hee Cho;Erik M. Ullian;Lori L. Isom

  • Dependence of Nodal Sodium Channel Clustering on Paranodal Axoglial Contact in the Developing CNS

    Matthew N. Rasband;Elior Peles;James S. Trimmer;S. Rock Levinson

  • Potassium Channel Distribution, Clustering, and Function in Remyelinating Rat Axons

    Matthew N. Rasband;James S. Trimmer;Thomas L. Schwarz;S. Rock Levinson

  • Mice deficient for tenascin-R display alterations of the extracellular matrix and decreased axonal conduction velocities in the CNS.

    P Weber;U Bartsch;U Bartsch;M N Rasband;R Czaniera

  • Sensory and electrophysiological properties of guinea‐pig sensory neurones expressing Nav 1.7 (PN1) Na+ channel α subunit protein

    Laiche Djouhri;Richard Newton;Simon Rock Levinson;Carol M. Berry

  • The Clustering of Axonal Sodium Channels during Development of the Peripheral Nervous System

    Ian Vabnick;Sanja D. Novaković;S. Rock Levinson;Melitta Schachner

  • A possible role for nerve growth factor in the augmentation of sodium channels in models of chronic pain.

    Harry J. Gould;Trevor N. Gould;John D. England;Dennis Paul

  • DYNAMIC POTASSIUM CHANNEL DISTRIBUTIONS DURING AXONAL DEVELOPMENT PREVENT ABERRANT FIRING PATTERNS

    Ian Vabnick;James S. Trimmer;Thomas L. Schwarz;S. Rock Levinson

  • Paranodal Interactions Regulate Expression of Sodium Channel Subtypes and Provide a Diffusion Barrier for the Node of Ranvier

    Jose C. Rios;Marina Rubin;Mary St. Martin;Ryan T. Downey

  • Identification of a large molecular weight peptide associated with a tetrodotoxin binding protein from the electroplax of Electrophoruselectricus

    William S. Agnew;Anne C. Moore;Simon R. Levinson;Michael A. Raftery

  • Sodium channel Nav1.6 accumulates at the site of infraorbital nerve injury.

    Michael A Henry;Angelique R Freking;Lonnie R Johnson;S Rock Levinson

  • The molecular mechanisms of anaesthesia

    Unknown

  • Immunolocalization of sodium channel isoform NaCh6 in the nervous system.

    Donna M. Krzemien;Kristin L. Schaller;S. Rock Levinson;John H. Caldwell

  • Ibuprofen blocks changes in Na v 1.7 and 1.8 sodium channels associated with complete Freund's adjuvant-induced inflammation in rat.

    Harry J Gould;John D England;R.Denis Soignier;Porter Nolan

  • Presynaptic Na+ Channels: Locus, Development, and Recovery from Inactivation at a High-Fidelity Synapse

    Ricardo M. Leão;Christopher Kushmerick;Christopher Kushmerick;Raphael Pinaud;Robert Renden

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