Skeletal Muscle

SCI期刊
Skeletal Muscle
中文名称:
骨骼肌
期刊缩写:
SKELET MUSCLE
影响因子:
5.3
ISSN:
print: 2044-5040
研究领域:
CELL BIOLOGY
创刊年份:
2011年
h-index:
32
自引率:
0.00%
Gold OA文章占比:
100.00%
原创研究文献占比:
80.00%
SCI收录类型:
Science Citation Index Expanded (SCIE) || Scopus (CiteScore) || Directory of Open Access Journals (DOAJ)
期刊介绍英文:
The only open access journal in its field, Skeletal Muscle publishes novel, cutting-edge research and technological advancements that investigate the molecular mechanisms underlying the biology of skeletal muscle. Reflecting the breadth of research in this area, the journal welcomes manuscripts about the development, metabolism, the regulation of mass and function, aging, degeneration, dystrophy and regeneration of skeletal muscle, with an emphasis on understanding adult skeletal muscle, its maintenance, and its interactions with non-muscle cell types and regulatory modulators. Main areas of interest include: -differentiation of skeletal muscle- atrophy and hypertrophy of skeletal muscle- aging of skeletal muscle- regeneration and degeneration of skeletal muscle- biology of satellite and satellite-like cells- dystrophic degeneration of skeletal muscle- energy and glucose homeostasis in skeletal muscle- non-dystrophic genetic diseases of skeletal muscle, such as Spinal Muscular Atrophy and myopathies- maintenance of neuromuscular junctions- roles of ryanodine receptors and calcium signaling in skeletal muscle- roles of nuclear receptors in skeletal muscle- roles of GPCRs and GPCR signaling in skeletal muscle- other relevant aspects of skeletal muscle biology. In addition, articles on translational clinical studies that address molecular and cellular mechanisms of skeletal muscle will be published. Case reports are also encouraged for submission. Skeletal Muscle reflects the breadth of research on skeletal muscle and bridges gaps between diverse areas of science for example cardiac cell biology and neurobiology, which share common features with respect to cell differentiation, excitatory membranes, cell-cell communication, and maintenance. Suitable articles are model and mechanism-driven, and apply statistical principles where appropriate; purely descriptive studies are of lesser interest.
CiteScore:
CiteScoreSJRSNIPCiteScore排名
9.11.8561.140
学科
排名
百分位
大类:Medicine
小类:Orthopedics and Sports Medicine
12 / 321
96%
大类:Biochemistry, Genetics and Molecular Biology
小类:Molecular Biology
92 / 410
77%
大类:Biochemistry, Genetics and Molecular Biology
小类:Cell Biology
77 / 285
73%
发文信息
中科院SCI期刊分区
大类 小类 TOP期刊 综述期刊
2区 医学
3区 细胞生物学 CELL BIOLOGY
WOS期刊分区
学科分类
Q2CELL BIOLOGY
历年影响因子
2015年3.5000
2016年3.7380
2017年3.8280
2018年4.0000
2019年3.7540
2020年4.9120
2021年5.0630
2022年4.9000
2023年5.3000
历年发表
2012年26
2013年29
2014年24
2015年53
2016年37
2017年29
2018年39
2019年32
2020年37
2021年28
2022年25
投稿信息
出版语言:
English
出版国家(地区):
ENGLAND
审稿时长:
12 weeks
出版商:
BioMed Central
编辑部地址:
CAMPUS, 4 CRINAN ST, LONDON, ENGLAND, N1 9XW

Skeletal Muscle - 最新文献

3D-environment and muscle contraction regulate the heterogeneity of myonuclei.

Pub Date : 2024-11-11 DOI: 10.1186/s13395-024-00359-x Rosa Nicolas, Marie-Ange Bonnin, Cédrine Blavet, Joana Esteves de Lima, Cécile Legallais, Delphine Duprez

Spiny mice are primed but fail to regenerate volumetric skeletal muscle loss injuries.

Pub Date : 2024-10-29 DOI: 10.1186/s13395-024-00358-y Mackenzie L Davenport, Amaya Fong, Kaela N Albury, C Spencer Henley-Beasley, Elisabeth R Barton, Malcolm Maden, Maurice S Swanson

Decreased number of satellite cells-derived myonuclei in both fast- and slow-twitch muscles in HeyL-KO mice during voluntary running exercise.

Pub Date : 2024-10-24 DOI: 10.1186/s13395-024-00357-z Kanako Iwamori, Manami Kubota, Lidan Zhang, Kazuki Kodama, Atsushi Kubo, Hiroki Kokubo, Takayuki Akimoto, So-Ichiro Fukada
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