Journal of Molecular Neuroscience

Basic Information

Brief Name: J MOL NEUROSCI
Impact Factor: 2.8
ISSN: 0895-8696
Research Field: MEDICAL
h-index: 79
Self-citation Rate: 2.3%
Articles per Year: 73

SCI Index Status: Science Citation Index Expanded
Journal Website: https://www.springer.com/12031
Journal Introduction:

The Journal of Molecular Neuroscience is committed to the rapid publication of original findings that increase our understanding of the molecular structure, function, and development of the nervous system. The criteria for acceptance of manuscripts will be scientific excellence, originality, and relevance to the field of molecular neuroscience. Manuscripts with clinical relevance are especially encouraged since the journal seeks to provide a means for accelerating the progression of basic research findings toward clinical utilization. All experiments described in the Journal of Molecular Neuroscience that involve the use of animal or human subjects must have been approved by the appropriate institutional review committee and conform to accepted ethical standards.

CiteScore

CiteScore
6.6
SJR
0.747
SNIP
0.659
Subject Rank Percentile
NeuroscienceCellular and Molecular Neuroscience
42 / 97 57%

Journal Statistics

Monthly
Issues/Year
Submission to first decision (median): 2 days
Review Cycle
£2990/$4790/€3690
Article Processing Fee

Submission Information

Submission Website:

https://submission.nature.com/new-submission/12031/3

Related Articles

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2016-04-13 Perspective

DOI: 10.1039/C6CP00670A

Evaluation of the energy barrier for failure of Au atomic contact based on temperature dependent current–voltage characteristics

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Inside front cover

Cover

DOI: 10.1039/C5CP90136G

Contents list

Front/Back Matter

DOI: 10.1039/C5CP90137E

A first principles study of CO2 adsorption on α-SiO2(001) surfaces

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2015-07-01 Paper

DOI: 10.1039/C5CP02279G

Lower temperature optimum of a smaller, fragmented triphosphorylation ribozyme

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Determining adsorbate configuration on alumina surfaces with 13C nuclear magnetic resonance relaxation time analysis

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