Knowledge Management System of Institute of Zoology, CAS
Overcoming Autocrine FGF Signaling-Induced Heterogeneity in Naive Human ESCs Enables Modeling of Random X Chromosome Inactivation | |
Source Publication | CELL STEM CELL |
2020 | |
Volume | 27Issue:3 |
An Chenrui; Feng GH(冯桂海); Zhang Jixiang; Cao Shiwei; Wang Ying; Wang Nannan; Lu Falong; Zhou Q(周琪); Wang HY(王皓毅) | |
Document Type | 期刊论文 |
Identifier | http://ir.ioz.ac.cn/handle/000000/14452 |
Collection | 干细胞与生殖生物学国家重点实验室 |
Recommended Citation GB/T 7714 | An Chenrui,Feng GH,Zhang Jixiang,et al. Overcoming Autocrine FGF Signaling-Induced Heterogeneity in Naive Human ESCs Enables Modeling of Random X Chromosome Inactivation[J]. CELL STEM CELL,2020,27(3). |
APA | An Chenrui.,冯桂海.,Zhang Jixiang.,Cao Shiwei.,Wang Ying.,...&王皓毅.(2020).Overcoming Autocrine FGF Signaling-Induced Heterogeneity in Naive Human ESCs Enables Modeling of Random X Chromosome Inactivation.CELL STEM CELL,27(3). |
MLA | An Chenrui,et al."Overcoming Autocrine FGF Signaling-Induced Heterogeneity in Naive Human ESCs Enables Modeling of Random X Chromosome Inactivation".CELL STEM CELL 27.3(2020). |
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File Name/Size | DocType | Version | Access | License | ||
Overcoming Autocrine(6265KB) | 期刊论文 | 出版稿 | 开放获取 | CC BY-NC-SA | View Download |
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