Frontiers in Neural Circuits 期刊简介
Frontiers in Neural Circuits publishes rigorously peer-reviewed research on the emergent properties of neural circuits - the elementary modules of the brain. Specialty Chief Editors Takao K. Hensch and Edward Ruthazer at Harvard University and McGill University respectively, are supported by an outstanding Editorial Board of international experts. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics and the public worldwide.
Frontiers in Neural Circuits launched in 2011 with great success and remains a "central watering hole" for research in neural circuits, serving the community worldwide to share data, ideas and inspiration. Articles revealing the anatomy, physiology, development or function of any neural circuitry in any species (from sponges to humans) are welcome. Our common thread seeks the computational strategies used by different circuits to link their structure with function (perceptual, motor, or internal), the general rules by which they operate, and how their particular designs lead to the emergence of complex properties and behaviors. Submissions focused on synaptic, cellular and connectivity principles in neural microcircuits using multidisciplinary approaches, especially newer molecular, developmental and genetic tools, are encouraged. Studies with an evolutionary perspective to better understand how circuit design and capabilities evolved to produce progressively more complex properties and behaviors are especially welcome. The journal is further interested in research revealing how plasticity shapes the structural and functional architecture of neural circuits.
神经回路的前沿发表了关于神经回路的新兴特性 (大脑的基本模块) 的严格同行评审的研究。哈佛大学和麦吉尔大学的专业主编Takao K. Hensch和Edward Ruthazer分别得到了杰出的国际专家编辑委员会的支持。这本多学科开放获取期刊是向世界各地的研究人员、学者和公众传播和交流科学知识和有影响力的发现的前沿。
神经回路前沿2011年成功启动,仍然是神经回路研究的 “中心水坑”,为全球社区提供服务,以共享数据,想法和灵感。欢迎介绍任何物种 (从海绵到人类) 中任何神经回路的解剖学,生理学,发育或功能的文章。我们的共同线程寻求不同电路使用的计算策略,以将其结构与功能 (感知,电机或内部) 联系起来,它们运行的一般规则以及它们的特定设计如何导致复杂属性和行为的出现。鼓励使用多学科方法,尤其是较新的分子,发育和遗传工具,重点研究神经微电路中的突触,细胞和连通性原理。具有进化观点的研究,以更好地了解电路设计和功能如何演变以产生逐渐更复杂的属性和行为,尤其值得欢迎。该杂志对揭示可塑性如何塑造神经回路的结构和功能架构的研究进一步感兴趣。
期刊ISSN
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1662-5110 |
影响指数
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3.457 |
最新CiteScore值
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5.70 查看CiteScore评价数据 |
最新自引率
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2.60% |
官方指定润色网址
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https://www.deeredit.com/?type=ss1 |
投稿语言要求
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Improve the quality of the paper, eliminate grammar and spelling errors, increase readability, ensure accurate communication of viewpoints, enhance academic reputation, and increase the chances of the paper being accepted. 建议点击这个网址:https://www.deeredit.com/?type=ss2,资深审稿专家为您评估稿件质量,提供针对性改进建议,最终可助您极大提升目标期刊录用率 |
期刊官方网址
hot |
https://www.peipusci.com/?type=9 |
杂志社征稿网址
hot |
https://www.peipusci.com/?type=10 |
通讯地址
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AVENUE DU TRIBUNAL FEDERAL 34, LAUSANNE, SWITZERLAND, CH-1015 |
偏重的研究方向(学科)
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NEUROSCIENCES- |
出版周期
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出版年份
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2007 |
出版国家/地区
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SWITZERLAND |
是否OA
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Yes |
SCI期刊coverage
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Science Citation Index Expanded(科学引文索引扩展) |
NCBI查询
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PubMed Central (PMC)链接 全文检索(pubmed central) |
最新中科院JCR分区
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大类(学科)
小类(学科)
综述期刊
医学
NEUROSCIENCES(神经科学)3区
否
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最新的影响因子
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3.457 | |||||
最新公布的期刊年发文量 |
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总被引频次 | 47 | |||||
影响因子趋势图 |
近年的影响因子趋势图(整体平稳趋势)
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2022年预警名单预测最新
最新CiteScore值
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5.70
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年文章数 | 81 | ||||||||||||||||||||||
SJR
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2.036 | ||||||||||||||||||||||
SNIP
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1.066 | ||||||||||||||||||||||
CiteScore排名
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CiteScore趋势图 |
CiteScore趋势图
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本刊同领域相关期刊
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期刊名称 | IF值 |
Chemosensory Perception | 1.815 |
ACS Chemical Neuroscience | 4.374 |
ACUPUNCTURE & ELECTRO-THERAPEUTICS RESEARCH | 0.142 |
NEUROPEPTIDES | 3.253 |
NEUROENDOCRINOLOGY | 4.865 |
NEUROIMMUNOMODULATION | 2.467 |
METABOLIC BRAIN DISEASE | 3.548 |
NEUROENDOCRINOLOGY LETTERS | 0.757 |
JOURNAL OF NEUROENDOCRINOLOGY | 3.591 |
本刊同分区等级的相关期刊
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期刊名称 | IF值 |
Chemosensory Perception | 1.815 |
NEUROPEPTIDES | 3.253 |
METABOLIC BRAIN DISEASE | 3.548 |
JOURNAL OF NEUROENDOCRINOLOGY | 3.591 |
Frontiers in Neuroinformatics | 4.04 |
NEUROCHEMICAL RESEARCH | 3.956 |
JOURNAL OF MOLECULAR NEUROSCIENCE | 3.41 |
SYNAPSE | 2.536 |
ASN Neuro | 4.105 |
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