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Role of brahma-related gene 1/brahma-associated factor subunits in neural stem/progenitor cells and related neural developmental disorders
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作者 Nai-Yu Ke Tian-Yi Zhao +2 位作者 Wan-Rong Wang yu-tong qian Chao Liu 《World Journal of Stem Cells》 SCIE 2023年第4期235-247,共13页
Different fates of neural stem/progenitor cells(NSPCs)and their progeny are determined by the gene regulatory network,where a chromatin-remodeling complex affects synergy with other regulators.Here,we review recent re... Different fates of neural stem/progenitor cells(NSPCs)and their progeny are determined by the gene regulatory network,where a chromatin-remodeling complex affects synergy with other regulators.Here,we review recent research progress indicating that the BRG1/BRM-associated factor(BAF)complex plays an important role in NSPCs during neural development and neural developmental disorders.Several studies based on animal models have shown that mutations in the BAF complex may cause abnormal neural differentiation,which can also lead to various diseases in humans.We discussed BAF complex subunits and their main characteristics in NSPCs.With advances in studies of human pluripotent stem cells and the feasibility of driving their differentiation into NSPCs,we can now investigate the role of the BAF complex in regulating the balance between self-renewal and differentiation of NSPCs.Considering recent progress in these research areas,we suggest that three approaches should be used in investigations in the near future.Sequencing of whole human exome and genome-wide association studies suggest that mutations in the subunits of the BAF complex are related to neurodevelopmental disorders.More insight into the mechanism of BAF complex regulation in NSPCs during neural cell fate decisions and neurodevelopment may help in exploiting new methods for clinical applications. 展开更多
关键词 Neural stem/progenitor cell BRG1/BRM-associated factor complex SUBUNIT Proliferation DIFFERENTIATION Neural developmental disorde
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大攻角下仿生水翼非一致流场及空化数值分析 被引量:1
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作者 钱昱同 赵晓涛 +1 位作者 程怀玉 季斌 《水动力学研究与进展(A辑)》 CSCD 北大核心 2022年第4期492-500,共9页
基于座头鲸鳍肢造型的仿生水翼在大攻角下具有优越的流动控制和空化性能,为研究大攻角下仿生水翼绕流机理,该文基于LES和ZGB模型对18°攻角下4L仿生水翼的空化流场进行了数值模拟,结果表明:大攻角下,仿生水翼表面存在非一致流场,其... 基于座头鲸鳍肢造型的仿生水翼在大攻角下具有优越的流动控制和空化性能,为研究大攻角下仿生水翼绕流机理,该文基于LES和ZGB模型对18°攻角下4L仿生水翼的空化流场进行了数值模拟,结果表明:大攻角下,仿生水翼表面存在非一致流场,其产生于分离涡的展向扩展及凸峰附着流的分割作用,根据分离涡状态将水翼表面流场分为扩张区和收缩区。收缩区内空泡形态较稳定,脱落频率小,存在由附着流汇合引起的小范围回射流;扩张区内存在“U”形空泡及涡结构,其产生于流向涡与回射流的共同作用;非一致流场下水翼表面呈现一定的压力脉动特征,水翼后部压力脉动较小而分区边界处压力脉动较大。 展开更多
关键词 空化 仿生水翼 空泡形态 涡结构 压力脉动
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