Skeletal Muscle
ISSN:2044-5040

Skeletal Muscle

SKELET MUSCLE
学科领域:医学
是否预警:不在预警名单内
是否OA:
录用周期:12 Weeks
新锐分区:医学2区
年发文量:36
影响因子:4.4
JCR分区:Q2

基本信息

作为该领域唯一的开放获取期刊,《骨骼肌》发表了研究骨骼肌生物学基础分子机制的新颖、前沿的研究和技术进步。反映了这一领域研究的广度,该杂志欢迎有关骨骼肌的发育、代谢、质量和功能的调节、老化、退化、营养不良和再生的稿件,重点是了解成年骨骼肌、其维护及其与非肌肉细胞类型和调节调节剂的相互作用。主要感兴趣的领域包括:-骨骼肌的分化-骨骼肌的萎缩和肥大-骨骼肌的老化-骨骼肌的再生和退化-卫星和卫星样细胞的生物学-骨骼肌的营养不良性退化-骨骼肌的能量和葡萄糖稳态-骨骼肌的非营养不良性遗传疾病,如脊髓性肌萎缩和肌病-神经肌肉接头的维护-骨骼肌中兰尼定受体和钙信号的作用-骨骼肌中核受体的作用-骨骼肌中GPCR和GPCR信号的作用-骨骼肌生物学的其他相关方面。此外,还将发表关于骨骼肌分子和细胞机制的翻译临床研究骨骼肌反映了骨骼肌研究的广度,并弥合了不同科学领域之间的差距,例如心脏细胞生物学和神经生物学,它们在细胞分化、兴奋膜、细胞间通讯和维持方面具有共同特征。合适的文章是模型和机制驱动的,并在适当时应用统计学原理;纯粹描述性的研究兴趣不大。
2044-5040SCIE/Scopus收录/DOAJ开放期刊
4.4
3.8
2026年3月发布
点击查看历史分区趋势    >
大类学科小类学科Top期刊综述期刊
医学2区
CELL BIOLOGY 细胞生物学
3区
N/A
WOS期刊SCI分区  2024-2025最新升级版
按JIF指标学科分区收集子录JIF分区JIF排名百分位
学科:CELL BIOLOGY
SCIE
Q2
80/204
按JCR指标学科分区收集子录JCR分区JCR排名百分位
学科:CELL BIOLOGY
SCIE
Q2
95/204
32
36
5%-12 WeeksGBP2090; USD2790; EUR2390CELL BIOLOGY-
2.3%
时间预警情况
2026年03月发布的新锐学术版不在预警名单中
2025年03月发布的2025版不在预警名单中
2024年02月发布的2024版不在预警名单中
2023年01月发布的2023版不在预警名单中
2021年12月发布的2021版不在预警名单中
2020年12月发布的2020版不在预警名单中
100.00%100%2.94%
CiteScore:8.30
SJR:1.914
SNIP:1.482
学科类别分区排名百分位
大类:Medicine
小类:Orthopedics and Sports Medicine
Q1
17 / 332
大类:Medicine
小类:Molecular Biology
Q2
110 / 410
大类:Medicine
小类:Cell Biology
Q2
88 / 285

期刊高被引文献

Culturing C2C12 myotubes on micromolded gelatin hydrogels accelerates myotube maturation
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0203-4
A GDF11/myostatin inhibitor, GDF11 propeptide-Fc, increases skeletal muscle mass and improves muscle strength in dystrophic mdx mice
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0197-y
Barium chloride injures myofibers through calcium-induced proteolysis with fragmentation of motor nerves and microvessels
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0213-2
IMB0901 inhibits muscle atrophy induced by cancer cachexia through MSTN signaling pathway
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0193-2
Estrogen signaling effects on muscle-specific immune responses through controlling the recruitment and function of macrophages and T cells
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0205-2
Automated image-analysis method for the quantification of fiber morphometry and fiber type population in human skeletal muscle
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0200-7
RNA-sequencing reveals altered skeletal muscle contraction, E3 ligases, autophagy, apoptosis, and chaperone expression in patients with critical illness myopathy
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0194-1
Late-onset megaconial myopathy in mice lacking group I Paks
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0191-4
The ancient sarcomeric myosins found in specialized muscles
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0192-3
NAD+ improves neuromuscular development in a zebrafish model of FKRP-associated dystroglycanopathy
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0206-1
Normal inflammation and regeneration of muscle following injury require osteopontin from both muscle and non-muscle cells
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0190-5
miR-1/206 downregulates splicing factor Srsf9 to promote C2C12 differentiation
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0211-4
Targeted ablation of the cellular inhibitor of apoptosis 1 (cIAP1) attenuates denervation-induced skeletal muscle atrophy
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0201-6
Muscle injury-induced hypoxia alters the proliferation and differentiation potentials of muscle resident stromal cells
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0202-5
miR-146a deficiency does not aggravate muscular dystrophy in mdx mice
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0207-0
mTORC2 affects the maintenance of the muscle stem cell pool
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0217-y
Regulation of murine skeletal muscle growth by STAT5B is age- and sex-specific
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0204-3
Exogenous expression of the glycosyltransferase LARGE1 restores α-dystroglycan matriglycan and laminin binding in rhabdomyosarcoma
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0195-0
Preclinical rationale for entinostat in embryonal rhabdomyosarcoma
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0198-x
Congenital myopathy with hanging big toe due to homozygous myopalladin (MYPN) mutation
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0199-9
Dilated cardiomyopathy-mediated heart failure induces a unique skeletal muscle myopathy with inflammation
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0189-y
LIM and cysteine-rich domains 1 (LMCD1) regulates skeletal muscle hypertrophy, calcium handling, and force
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0214-1
Muscle Gene Sets: a versatile methodological aid to functional genomics in the neuromuscular field
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0196-z
Two functional variants at 6p21.1 were associated with lean mass
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0212-3
Defective angiogenesis in CXCL12 mutant mice impairs skeletal muscle regeneration
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0210-5
Ibuprofen inhibited migration of skeletal muscle cells in association with downregulation of p130cas and CrkII expressions
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0208-z
Immunohistochemical phenotyping of T cells, granulocytes, and phagocytes in the muscle of cancer patients: association with radiologically defined muscle mass and gene expression
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0209-y
Development of a high-throughput screen to identify small molecule enhancers of sarcospan for the treatment of Duchenne muscular dystrophy
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0218-x
In memoriam: Susan Abmayr (1956–2019) – “What do we do? Whatever it takes!”
来源期刊:Skeletal MuscleDOI:10.1186/s13395-019-0215-0

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