日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Multi-material Electrohydrodynamic Printing of Bioelectronics with Sub-Microscale 3D Gold Pillars for In Vitro Extra- and Intra-Cellular Electrophysiological Recordings

利用亚微米级 3D 金柱进行多材料电流体动力学打印生物电子元件,用于体外细胞外和细胞内电生理记录

Bingsong Gu, Qihang Ma, Jiaxin Li, Wangkai Xu, Yuke Xie, Peng Lu, Kun Yu, Ziyao Huo, Xiao Li, Jianhua Peng, Yong Jiang, Dichen Li, Jiankang He

Biomimetic design and integrated biofabrication of an in-vitro three-dimensional multi-scale multilayer cortical model

体外三维多尺度多层皮层模型的仿生设计与集成生物制造

Ling Wang, Luge Bai, Sen Wang, Jiajia Zhou, Yingjie Liu, Chenrui Zhang, Siqi Yao, Jiankang He, Chaozong Liu, Dichen Li

Leaf-venation-directed cellular alignment for macroscale cardiac constructs with tissue-like functionalities

利用叶脉引导的细胞排列构建具有组织样功能的宏观心脏结构

Mao Mao #,Xiaoli Qu #,Yabo Zhang #,Bingsong Gu,Chen Li,Rongzhi Liu,Xiao Li,Hui Zhu,Jiankang He,Dichen Li

Mass Production of Customizable Core-Shell Active Materials in Seconds by Nano-Vapor Deposition for Advancing Lithium Sulfur Battery

利用纳米气相沉积技术在数秒内大规模生产可定制的核壳活性材料,以推进锂硫电池的发展

Feng, Lanxiang; Zhu, Zhiwei; Yan, Rui; Fu, Xuewei; He, Xuewei; Wu, Dichen; Li, Hua; Guo, Zaiping; Yang, Wei; Wang, Yu

Electrohydrodynamic Printing of Microfibrous Architectures with Cell-Scale Spacing for Improved Cellular Migration and Neurite Outgrowth

电流体动力学打印具有细胞尺度间距的微纤维结构,以改善细胞迁移和神经突生长

Cong Yao, Zhennan Qiu, Xiao Li, Hui Zhu, Dichen Li, Jiankang He

3D Bioprinting of Neurovascular Tissue Modeling with Collagen-Based Low-Viscosity Composites

利用胶原基低粘度复合材料进行神经血管组织建模的 3D 生物打印

Sen Wang, Luge Bai, Xiaoxuan Hu, Siqi Yao, Zhiyan Hao, JiaJia Zhou, Xiao Li, Haixia Lu, Jiankang He, Ling Wang, Dichen Li

Pore size-mediated macrophage M1 to M2 transition affects osseointegration of 3D-printed PEEK scaffolds

孔径介导的巨噬细胞 M1 到 M2 转变影响 3D 打印 PEEK 支架的骨整合

Xiaopeng Yang, Jianbo Gao, Shenyu Yang, Yan Wu, Huilong Liu, Danyang Su, Dichen Li

Superhydrophilic and topography-regulatable surface grafting on PEEK to improve cellular affinity

PEEK 上的超亲水和拓扑可调表面接枝可提高细胞亲和力

Bowen Zhang, Junqing Leng, Zhicong Ouyang, Zijian Yang, Qing Zhang, Qingchu Li, Dichen Li, Huiyu Zhao

Electric-Field-Driven Printed 3D Highly Ordered Microstructure with Cell Feature Size Promotes the Maturation of Engineered Cardiac Tissues

电场驱动打印具有细胞特征尺寸的 3D 高度有序微结构促进工程心脏组织的成熟

Guangming Zhang, Wenhai Li, Miao Yu, Hui Huang, Yaning Wang, Zhifeng Han, Kai Shi, Lingxuan Ma, Zhihao Yu, Xiaoyang Zhu, Zilong Peng, Yue Xu, Xiaoyun Li, Shijun Hu, Jiankang He, Dichen Li, Yongming Xi, Hongbo Lan, Lin Xu, Mingliang Tang, Miao Xiao

In vivo evaluation of additively manufactured multi-layered scaffold for the repair of large osteochondral defects

增材制造多层支架修复大型骨软骨缺损的体内评估

Maryam Tamaddon, Gordon Blunn, Rongwei Tan, Pan Yang, Xiaodan Sun, Shen-Mao Chen, Jiajun Luo, Ziyu Liu, Ling Wang, Dichen Li, Ricardo Donate, Mario Monzón, Chaozong Liu