机构:[1]Institute of Biomedical Engineering, West China School of Basic Medical Sciences & Forensic Medicine, Sichuan University, Chengdu, PR China.[2]Department of Radiotherapy, Radiation Oncology Key Laboratory of Sichuan Province, Sichuan Clinical Research Center for Cancer, Sichuan Cancer Hospital and Institute, Sichuan Cancer Center, Affiliated Cancer Hospital of University of Electronic Science and Technology of China, Chengdu, PR China.四川省肿瘤医院
Supported by funding from the National Natural Science Foundation of China (12272246), the Key Research and Development Projects of Sichuan Province (2023YFS0075), and the Radiation Oncology Key Laboratory of Sichuan Province Open Fund (2023ROKF02). Thanks to Dr. Shun Li from the University of Electronic Science and Technology of China for the gift of fluorescent polystyrene microspheres and for his technical assistance with cell traction force microscopy.
第一作者机构:[1]Institute of Biomedical Engineering, West China School of Basic Medical Sciences & Forensic Medicine, Sichuan University, Chengdu, PR China.
共同第一作者:
通讯作者:
推荐引用方式(GB/T 7714):
Jiang Wenli,Yao Xinghong,Zhong Jian,et al.Spatial confinement modulates endothelial cell behavior and traction force in 3D hydrogel microgrooves[J].MATERIALS TODAY BIO.2024,26:101074.doi:10.1016/j.mtbio.2024.101074.
APA:
Jiang Wenli,Yao Xinghong,Zhong Jian,Ouyang Zhi,Shen Junyi...&Zeng Ye.(2024).Spatial confinement modulates endothelial cell behavior and traction force in 3D hydrogel microgrooves.MATERIALS TODAY BIO,26,
MLA:
Jiang Wenli,et al."Spatial confinement modulates endothelial cell behavior and traction force in 3D hydrogel microgrooves".MATERIALS TODAY BIO 26.(2024):101074