Google Scholar: https://scholar.google.com/citations?view_op=list_works&hl=zh-CN&hl=zh-CN&user=mraosQIAAAAJ
代表性论文(#一作,*通讯):
1. Zhang Zhenrui#, Zhou Xianhao#, Fang Yongcong*, Xiong Zhuo*, Zhang Ting*. Artificial intelligence-driven 3D bioprinting for regenerative medicine: from bench to bedside. Bioactive Materials, 2025, 45: 201-230. (共同通讯作者)
2. Mo Xingwu#, Zhang Yanmei#, Wang Zixuan#, Zhou Xianhao, Zhang Zhenrui, Fang Yongcong*, Fan Zilian, Guo Yihan, Zhang Ting*, Xiong Zhuo*. Satellite-based on-orbit printing of 3D tumor models, Advanced Materials, 2024, 36(34): e2309618. (共同通讯作者)
3. Wu Bingyan#, Zeng Zhaoxi, Fang Yongcong*, Zhang Zhenrui, Tian Yueming, Lu Bingchuan, Li Binhan, Liu Zibo, Zhang Ting, Xiong Zhuo*. Omnidirectional elastic constraint-based embedded 3D printing in non-yield stress fluids for engineering complex tissues. Materials Today, 2024, 80: 74-86. (共同通讯作者)
4. Zhou Xianhao#, Fang Yongcong*, Zhang Ting, Xiong Zhuo*. Retrospective: advances and opportunities of 3D bioprinting in China over three decades. Additive Manufacturing Frontiers, 2024, 3(4): 200157. (共同通讯作者)
5. Fang Yongcong#,*, Xiong Zhuo*. Towards Personalized Medicine: Unlocking On-demand Organ Manufacturing through 3D Bioprinting. The Innovation Life, 2024, 2:100096.(第一作者)
6. Fang Yongcong#, Guo Yihan, Wu Bingyan, et al. Expanding Embedded 3D Bioprinting Capability for Engineering Complex Organs with Freeform Vascular Networks. Advanced Materials, 2023, 35(22), 2205082.(第一作者,封面论文)
7. Fang Yongcong#, Wang Chengjin#, Liu Zibo, et al. 3D Printed Conductive Multiscale Nerve Guidance Conduit with Hierarchical Fibers for Peripheral Nerve Regeneration. Advanced Science, 2023, 10(12): 2205744. (第一作者,高被引论文)
8. Fang Yongcong#, Guo Yihan, Ji Mengke, et al. 3D printing of cell-laden microgel-based biphasic bioink with heterogeneous microenvironment for biomedical applications, Advanced Functional Materials, 2022, 32(13): 2109810. (第一作者)
9. Fang Yongcong#, Sun Wei, Zhang Ting, et al. Recent advances on bioengineering approaches for fabrication of functional engineered cardiac pumps: A review, Biomaterials, 2022, 280: 121298. (第一作者)
10. Fang Yongcong#, Guo Yuzhi#, Liu, Tiankun, et al. Advances in 3D Bioprinting. Chinese Journal of Mechanical Engineering: Additive Manufacturing Frontiers, 2022, 1(1): p. 100011. (第一作者)
11. Fang Yongcong#, Ouyang Liliang, Zhang Ting, et al. Optimizing bifurcated channels within an anisotropic scaffold for engineering vascularized oriented tissues, Advanced Healthcare Materials, 2020, 24(9): 2000782.(第一作者,封底论文)
12. Fang Yongcong#, Zhang Ting, Zhang Lei, et al. Biomimetic design and fabrication of scaffolds integrating oriented micro-pores with branched channel networks for myocardial tissue engineering, Biofabrication, 2019, 11(3): 035004. (第一作者)
13. Fang Yongcong#, Zhang Ting, Liverani Liliana, et al. Novel biomimetic fiber incorporated scaffolds for tissue engineering, Journal of Biomedical Materials Research-Part A, 2019, 107(12): 2694-2705. (第一作者)
14. Fang Yongcong#, Zhang Ting, Song Yu, et al. Assessment of various crosslinking agents on collagen/chitosan scaffolds for myocardial tissue engineering. Biomedical Materials, 2020, 15(4): 045003. (第一作者)
申请或授权专利
1. 张婷、方永聪、张真睿、熊卓、周锦鹏、洪少桐、周显昊,丝高丝宽解耦控制的生物3D打印机喷头结构及打印方法,2024/11/27,中国,CN202411862997.1
2. 熊卓、吴炳炎、方永聪、张婷,一种基于非屈服应力流体的悬浮打印方法与应用,2024/05/08,中国,CN202410792240.3
3. 熊卓、方永聪、张真睿、莫兴武、张婷、王子萱,面向空间组织和器官模型构建的生物墨水、悬浮介质及悬浮3D打印方法,2023/11/30,中国,CN202311572657.0
4. 方永聪、熊卓、孙若斌、欧阳礼亮、张婷,一种基于致孔支撑浴的组织或器官悬浮打印与原位培养方法,2023/12/08,中国,CN202311658365.9
5. 方永聪、熊卓、王格、欧阳礼亮、张娟、张婷,基于悬浮3D打印的柔性电子器件构建方法,2023/11/30,中国,CN202311632372.1
6. 方永聪,熊卓,张婷,一种基于凝胶微球的3D打印生物墨水及其应用,2021/05/14,中国,CN202110526911.8
7. 陈明学,李扬扬,方永聪,周一新,杨德金,邵宏翊,张颂阳,一种丝素蛋白生物材料墨水及其制备方法和应用,2022/08/10,中国,ZL202210959142.5
8. 熊卓;方永聪,张婷,郭依涵,郭昱江,一种构建复杂异质组织/器官的多级悬浮打印方法,2022/10/21,中国,ZL202110526251.3
9. 熊卓,方永聪,张婷,鲁冰川,一种具有仿生螺旋取向化微结构的人工心室及其制备方法,2022/05/03,中国,ZL202110598810.1
10. 熊卓,方永聪,张婷,一种构建具有异质功能纤维和血管通道的纤维束/组织结构的方法,2022/08/12,中国,ZL202110598763.0
11. 张婷,方永聪,孙伟,贾波,一种具有多层血管结构的仿生血管化软组织及其制备方法,2017/9/29,中国,ZL201710904777.4
12. 张婷,方永聪,孙伟,林峰,张磊,赵亚玲,一种含内通道网络和定向孔隙结构的仿生组织工程支架及其制备方法与应用,2019/1/4,中国,ZL201510784043.8
13. 孙伟,方永聪,张婷,莉莉安娜·利维拉尼,奥尔多·博卡奇尼,一种含微孔隙和纳米纤维复合结构的仿生组织工程支架及其制备方法,2017/9/30,中国,ZL201710939000.1