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Chenyang Si

Showing results (11-20 of 26) with videos related to

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Biomaterials|April 21, 2020
Modulation of Wnt and Activin/Nodal supports efficient derivation, cloning and suspension expansion of human pluripotent stem cellsZongyong Ai, Baohua Niu, Kui Duan, et al.
Human Molecular Genetics|April 11, 2015
Functional disruption of the dystrophin gene in rhesus monkey using CRISPR/Cas9Yongchang Chen, Yinghui Zheng, Yu Kang, et al.
Cell Research|February 25, 2017
De novo DNA methylation during monkey pre-implantation embryogenesisFei Gao, Yuyu Niu, Yi Eve Sun, et al.
Cell Reports|November 29, 2018
Improving Cell Survival in Injected Embryos Allows Primed Pluripotent Stem Cells to Generate Chimeric Cynomolgus MonkeysYu Kang, Zongyong Ai, Kui Duan, et al.
Science Advances|March 4, 2022
<i>BRN2</i> as a key gene drives the early primate telencephalon developmentXiaoqing Zhu, Yicheng Guo, Chu Chu, et al.
IEEE Transactions on Pattern Analysis and Machine Intelligence|November 17, 2025
VBench++: Comprehensive and Versatile Benchmark Suite for Video Generative ModelsZiqi Huang, Fan Zhang, Xiaojie Xu, et al.
Brain : a Journal of Neurology|February 7, 2026
α-Synuclein aggregation and brain atrophy in SNCA-A53T transgenic monkeys correlate with parkinsonismJingkuan Wei, Shulin Li, Dingna Duan, et al.
Protein & Cell|July 31, 2020
Generation of a Hutchinson-Gilford progeria syndrome monkey model by base editingFang Wang, Weiqi Zhang, Qiaoyan Yang, et al.
Nature Communications|August 27, 2021
Amnion signals are essential for mesoderm formation in primatesRan Yang, Alexander Goedel, Yu Kang, et al.
Nature Communications|July 2, 2025
Production of live monkeys and their genetically matched embryonic stem cells from single embryosChenyang Si, Ran Zhu, Junmo Wu, et al.
Pageof 3

Showing results (11-20 of 26) with videos related to

Sort By:
Pageof 3
Biomaterials|April 21, 2020
Modulation of Wnt and Activin/Nodal supports efficient derivation, cloning and suspension expansion of human pluripotent stem cellsZongyong Ai, Baohua Niu, Kui Duan, et al.
Human Molecular Genetics|April 11, 2015
Functional disruption of the dystrophin gene in rhesus monkey using CRISPR/Cas9Yongchang Chen, Yinghui Zheng, Yu Kang, et al.
Cell Research|February 25, 2017
De novo DNA methylation during monkey pre-implantation embryogenesisFei Gao, Yuyu Niu, Yi Eve Sun, et al.
Cell Reports|November 29, 2018
Improving Cell Survival in Injected Embryos Allows Primed Pluripotent Stem Cells to Generate Chimeric Cynomolgus MonkeysYu Kang, Zongyong Ai, Kui Duan, et al.
Science Advances|March 4, 2022
<i>BRN2</i> as a key gene drives the early primate telencephalon developmentXiaoqing Zhu, Yicheng Guo, Chu Chu, et al.
IEEE Transactions on Pattern Analysis and Machine Intelligence|November 17, 2025
VBench++: Comprehensive and Versatile Benchmark Suite for Video Generative ModelsZiqi Huang, Fan Zhang, Xiaojie Xu, et al.
Brain : a Journal of Neurology|February 7, 2026
α-Synuclein aggregation and brain atrophy in SNCA-A53T transgenic monkeys correlate with parkinsonismJingkuan Wei, Shulin Li, Dingna Duan, et al.
Protein & Cell|July 31, 2020
Generation of a Hutchinson-Gilford progeria syndrome monkey model by base editingFang Wang, Weiqi Zhang, Qiaoyan Yang, et al.
Nature Communications|August 27, 2021
Amnion signals are essential for mesoderm formation in primatesRan Yang, Alexander Goedel, Yu Kang, et al.
Nature Communications|July 2, 2025
Production of live monkeys and their genetically matched embryonic stem cells from single embryosChenyang Si, Ran Zhu, Junmo Wu, et al.
Pageof 3