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期刊名字 | ANGIOGENESIS ANGIOGENESIS (此期刊被最新的JCR期刊SCIE收录) LetPub评分 7.7
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声誉 8.7 影响力 7.0 速度 6.9 | |||||||||||||||||||||||||
期刊ISSN | 0969-6970 | 微信扫码收藏此期刊 | ||||||||||||||||||||||||
E-ISSN | 1573-7209 | |||||||||||||||||||||||||
2022-2023最新影响因子 (数据来源于搜索引擎) | 9.8 点击查看影响因子趋势图 | |||||||||||||||||||||||||
实时影响因子 | 截止2023年12月27日:8.083 | |||||||||||||||||||||||||
2022-2023自引率 | 8.20%点击查看自引率趋势图 | |||||||||||||||||||||||||
五年影响因子 | 9.2 | |||||||||||||||||||||||||
h-index | 80 | |||||||||||||||||||||||||
CiteScore |
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期刊简介 | Angiogenesis is an international peer-reviewed journal devoted to the publication of top quality original articles and reviews on the cellular and molecular mechanisms that regulate angiogenesis in physiological and pathological conditions. As a central source for rapid communications representing the full spectrum of angiogenesis research, this multidisciplinary journal publishes innovative experimental studies using molecular, in vitro, animal model systems and clinical investigations of angiogenic diseases. Angiogenesis also reports on novel therapeutic approaches for promoting or inhibiting angiogenesis as well as new markers and techniques for disease diagnosis and prognosis. | |||||||||||||||||||||||||
期刊官方网站 | https://www.springer.com/10456 | |||||||||||||||||||||||||
期刊投稿网址 | https://www.editorialmanager.com/agen | |||||||||||||||||||||||||
作者指南网址 | https://www.springer.com/10456/submission-guidelines | |||||||||||||||||||||||||
期刊语言要求 | Language Presenting your work in a well-structured manuscript and in well-written English gives it its best chance for editors and reviewers to understand it and evaluate it fairly. Many researchers find that getting some independent support helps them present their results in the best possible light. 经LetPub语言功底雄厚的美籍native English speaker精心编辑的稿件,不仅能满足ANGIOGENESIS的语言要求,还能让ANGIOGENESIS编辑和审稿人得到更好的审稿体验,让稿件最大限度地被ANGIOGENESIS编辑和审稿人充分理解和公正评估。LetPub的专业SCI论文编辑服务(包括SCI论文英语润色,同行资深专家修改润色,SCI论文专业翻译,SCI论文格式排版,专业学术制图等)帮助作者准备稿件,已助力全球15万+作者顺利发表论文。部分发表范例可查看:服务好评 论文致谢 。 提交文稿 | |||||||||||||||||||||||||
是否OA开放访问 | No | |||||||||||||||||||||||||
通讯方式 | SPRINGER, VAN GODEWIJCKSTRAAT 30, DORDRECHT, NETHERLANDS, 3311 GZ | |||||||||||||||||||||||||
出版商 | Springer Netherlands | |||||||||||||||||||||||||
涉及的研究方向 | PERIPHERAL VASCULAR DISEASE- | |||||||||||||||||||||||||
出版国家或地区 | NETHERLANDS | |||||||||||||||||||||||||
出版语言 | English | |||||||||||||||||||||||||
出版周期 | Quarterly | |||||||||||||||||||||||||
出版年份 | 1997 | |||||||||||||||||||||||||
年文章数 | 33点击查看年文章数趋势图 | |||||||||||||||||||||||||
Gold OA文章占比 | 42.18% | |||||||||||||||||||||||||
研究类文章占比: 文章 ÷(文章 + 综述) | 90.91% | |||||||||||||||||||||||||
WOS期刊SCI分区 ( 2022-2023年最新版) | WOS分区等级:1区
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中科院《国际期刊预警 名单(试行)》名单 | 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 | |||||||||||||||||||||||||
中科院SCI期刊分区 ( 2023年12月最新升级版) | 点击查看中科院SCI期刊分区趋势图
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中科院SCI期刊分区 ( 2022年12月升级版) |
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中科院SCI期刊分区 ( 2021年12月旧的升级版) |
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SCI期刊收录coverage | Science Citation Index Expanded (SCIE) (2020年1月,原SCI撤销合并入SCIE,统称SCIE) Scopus (CiteScore) | |||||||||||||||||||||||||
PubMed Central (PMC)链接 | http://www.ncbi.nlm.nih.gov/nlmcatalog?term=0969-6970%5BISSN%5D | |||||||||||||||||||||||||
平均审稿速度 | 网友分享经验: 较慢,6-12周 | |||||||||||||||||||||||||
平均录用比例 | 网友分享经验: | |||||||||||||||||||||||||
LetPub助力发表 | 经LetPub编辑的稿件平均录用比例是未经润色的稿件的1.5倍,平均审稿时间缩短40%。众多作者在使用LetPub的专业SCI论文编辑服务(包括SCI论文英语润色,同行资深专家修改润色,SCI论文专业翻译,SCI论文格式排版,专业学术制图等)后论文在ANGIOGENESIS顺利发表。
快看看作者怎么说吧:服务好评 论文致谢 | |||||||||||||||||||||||||
期刊常用信息链接 |
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中国学者近期发表的论文 | |
1. | Targeting SMYD2 inhibits angiogenesis and increases the efficiency of apatinib by suppressing EGFL7 in colorectal cancer Author: Zhang, Yi; Zhou, Lei; Xu, Yixin; Zhou, Jingyu; Jiang, Tao; Wang, Jiaqi; Li, Chao; Sun, Xiaoxiong; Song, Hu; Song, Jun Journal: ANGIOGENESIS. 2023; Vol. 26, Issue 1, pp. 1-18. DOI: 10.1007/s10456-022-09839-4 PubMed DOI |
2. | S100A4-dependent glycolysis promotes lymphatic vessel sprouting in tumor Author: Li, Anqi; Zhu, Linyu; Lei, Ningjing; Wan, Jiajia; Duan, Xixi; Liu, Shuangqing; Cheng, Yanru; Wang, Ming; Gu, Zhuoyu; Zhang, Huilei; Bai, Yueyue; Zhang, Li; Wang, Fazhan; Ni, Chen; Qin, Zhihai Journal: ANGIOGENESIS. 2023; Vol. 26, Issue 1, pp. 19-36. DOI: 10.1007/s10456-022-09845-6 PubMed DOI |
3. | MicroRNA-375 repression of Kruppel-like factor 5 improves angiogenesis in diabetic critical limb ischemia Author: McCoy, Michael G.; Jamaiyar, Anurag; Sausen, Grasiele; Cheng, Henry S.; Perez-Cremades, Daniel; Zhuang, Rulin; Chen, Jingshu; Goodney, Philip P.; Creager, Mark A.; Sabatine, Marc S.; Bonaca, Marc P.; Feinberg, Mark W. Journal: ANGIOGENESIS. 2023; Vol. 26, Issue 1, pp. 107-127. DOI: 10.1007/s10456-022-09856-3 PubMed DOI |
4. | Damage to endothelial barriers and its contribution to long COVID Author: Wu, Xiaoming; Xiang, Mengqi; Jing, Haijiao; Wang, Chengyue; Novakovic, Valerie A.; Shi, Jialan Journal: ANGIOGENESIS. 2023; Vol. , Issue , pp. -. DOI: 10.1007/s10456-023-09878-5 PubMed DOI |
5. | Endothelial hyperactivation of mutant MAP3K3 induces cerebral cavernous malformation enhanced by PIK3CA GOF mutation Author: Huo, Ran; Yang, Yingxi; Sun, Yingfan; Zhou, Qiuxia; Zhao, Shaozhi; Mo, Zongchao; Xu, Hongyuan; Wang, Jie; Weng, Jiancong; Jiao, Yuming; Zhang, Junze; He, Qiheng; Wang, Shuo; Zhao, Jizong; Wang, Jiguang; Cao, Yong Journal: ANGIOGENESIS. 2023; Vol. 26, Issue 2, pp. 295-312. DOI: 10.1007/s10456-023-09866-9 PubMed DOI |
6. | Loss of GLTSCR1 causes congenital heart defects by regulating NPPA transcription Author: Han, Fengyan; Yang, Beibei; Chen, Yan; Liu, Lu; Cheng, Xiaoqing; Huang, Jiaqi; Zhou, Ke; Zhang, Dandan; Xu, Enping; Lai, Maode; Lv, Bingjian; Cheng, Hongqiang; Zhang, Honghe Journal: ANGIOGENESIS. 2023; Vol. 26, Issue 2, pp. 217-232. DOI: 10.1007/s10456-023-09869-6 PubMed DOI |
7. | A ribosomal DNA-hosted microRNA regulates zebrafish embryonic angiogenesis Author: Yunwei Shi, Xuchu Duan, Guangmin Xu, Xiaoning Wang, Guanyun Wei, Shikui Dong, Gangcai Xie, Dong Liu Journal: ANGIOGENESIS, 2019, Vol., , DOI:10.1007/s10456-019-09663-3 DOI |
8. | Prion protein is essential for diabetic retinopathy-associated neovascularization Author: Lingyan Zhu, Jixiong Xu, Ying Liu, Tian Gong, Jianying Liu, Qiong Huang, Shane Fischbach, Wenquan Zou, Xiangwei Xiao Journal: ANGIOGENESIS, 2018, Vol., , DOI:10.1007/s10456-018-9619-4 DOI |
9. | SNAI1, an endothelial–mesenchymal transition transcription factor, promotes the early phase of ocular neovascularization Author: Jia-Xing Sun, Tian-Fang Chang, Man-Hong Li, Li-Juan Sun, Xian-Chun Yan, Zi-Yan Yang, Yuan Liu, Wen-Qin Xu, Yang Lv, Jing-Bo Su, Liang Liang, Hua Han, Guo-Rui Dou, Yu-Sheng Wang Journal: ANGIOGENESIS, 2018, Vol.21, 635-652, DOI:10.1007/s10456-018-9614-9 DOI |
10. | BI1 is associated with microvascular protection in cardiac ischemia reperfusion injury via repressing Syk–Nox2–Drp1-mitochondrial fission pathways Author: Hao Zhou, Chen Shi, Shunying Hu, Hong Zhu, Jun Ren, Yundai Chen Journal: ANGIOGENESIS, 2018, Vol.21, 599-615, DOI:10.1007/s10456-018-9611-z DOI |
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