殷瑞雪 博士
E-mail: yinruixue@ecust.edu.cn
专业:机械工程/生物医学工程
职称: 副教授 (机械工程/机械 动力工程及工程热物理/能源动力 学术/专业 硕士研究生导师)
招生要求:欢迎对智能装备与机器人/智能制造/医学应用感兴趣且具备机械/动力工程领域专业知识的同学们报考!给自己一个不念生物学/医学也能救死扶伤的机会!
个人简介:
2020.9-今 3354cc金沙集团 副教授;
2016.4-2020.8 3354cc金沙集团 讲师;
2016.6-2018.6 加拿大萨斯喀彻温大学机械工程/生物医学工程系 博士后;
2013.9-2016.3 3354cc金沙集团 师资博士后;
2008.9-2013.7 北京化工大学材料科学与工程学院 博士。
联系方法:
地址:上海市徐汇区梅陇路130号3354cc金沙集团实验14楼209
电话:021-64253578 手机/微信:15201799314
研究方向
“学科交叉”解决智能装备与控制和智能制造关键基础问题,推动医学应用研究产业转化
1. 智能/可穿戴传感器、嵌入式机电控制、机电系统建模与仿真
基于智能材料、传感器新原理及柔性制造技术,结合力光电磁多物理场仿真,开发连续血糖监测、眼压监测、微创手术压力监测、肌电信号检测、硫化氢尿素等生化分子检测传感器嵌入式系统
2. 软体/微纳米机器人技术 、微纳机器人运动与集群控制
以非接触控制技术为手段(如光控制、磁控制),开发智能驱动软体/微纳米机器人
3. 基于微流体及微立体光刻(微纳3D打印)技术的微纳制造
基于微流控液滴制备技术、细胞捕获技术开发生物医用芯片;以生物3D打印、光固化3D打印、双光子微纳3D打印技术为手段保障智能器件及软体/微纳米机器人的加工成型
承担科研项目
国家及省部级项目:
[1] 葡萄糖响应性单分散核壳结构微球用于可调控胰岛素递送的研究,国家自然科学基金青年基金项目 (项目负责人,已结题)
[2] 3D打印包埋载体的药物支架用于持续性胰岛素自调节递送, 中央高校基本科研业务费探索研究专项 (项目负责人,已结题)
企业横向项目:
[1] 基于光固化微纳打印的微创植/介入传感器及微纳机器人开发,明澈生物科技有限公司,200万(项目负责人,在研)
[2] 多尺度血管网络特异性组织的设计及构建,转化医学国家科学中心(上海),40万(项目负责人,在研)
技术转让项目:
[1] 基于光学法布里-珀罗干涉的压力导丝设计开发
[2] 基于磁控微纳机器人技术的血管介入颠覆性技术
[3] 连续血糖监测传感器系统开发
代表性著作
在Nature Communications等高水平期刊发表SCI收录英文科技论文四十余篇(第一作者/通讯作者发表论文二十余篇),第一及通讯作者论文I区10篇,II区9篇;5以上16篇;TOP 16篇;申请中国发明专利20余项,授权10余项,技术转让5项。
近五年代表性一作/通讯作者论文:
1. Ningning Hu, Lujia Ding, Wenju Zhou, Wenjun Zhang, Bing Zhang* and Ruixue Yin*, Comprehensive modeling of corkscrew motion in micro-/nano-robots with general helical structures, Nature Communications, 2024, accepted. (I区,IF 16,TOP)
2. Xinzhao Zhou, Zhekai Ma, Kemin Wang, Guanqing Zhang, Dongni Ren, Wenjun Zhang, Bing Zhang*and Ruixue Yin*,
Motion Control of Magnetic-controlled Spiral Microrobots for In vitro Plaque Removal, IEEE Robotics and Automation Letters, 2024, DOI: 10.1109/LRA.2024.3392492. (“机器人领域顶刊”,IF 5.2)
3. Heming Wei*, Long Han, Ruixue Yin,*, Tian Yang, Yunqi Liu, Chengbo Mou, Fufei Pang, Tingyun Wang, Micro-3D printed Concanavalin A hydrogel based photonic devices for high-sensitivity glucose sensing, Sensors and Actuators B: Chemical, 2023, accepted.(I区,IF 9.22,TOP)
4. Men, L., Wang, K., Hu, N., Wang, F., Deng, Y., Zhang, W*., & Yin, R*. Biocompatible polymers with tunable mechanical properties and conductive functionality on two-photon 3D printing. RSC advances, 2023,13(13), 8586-8593. (III区,IF 4.03)
5. Hu Y, Yang, D., Zhang, H., Gao, Y*., Zhang, W., & Yin, R*. A High-Linearity Glucose Sensor Based on Silver-Doped Con A Hydrogel and Laser Direct Writing. Polymers, 2023, 15(6): 1423. (II区,IF 4.96)
6. Qi Li, Dasheng Yang, Yang Gao*, Ziyang Wang, Ruixue Yin*, Fuzhen Xuan,Highly Sensitive and Flexible Copper Oxide/Graphene Non-Enzymatic Glucose Sensor by Laser Direct Writing, Advanced Sensor Research, 2023, 2200067.https://doi.org/10.1002/adsr.202200067.
7. Yin R, Xin J, Yang D, Gao Y, Zhang H, Qian Z, Zhang W. High-Linearity Hydrogel-Based Capacitive Sensor Based on Con A-Sugar Affinity and Low-Melting-Point Metal. Polymers (Basel). 2022 Oct 13;14(20):4302
8. Wang K*, Yin R*, Lu Y, Qiao H, Zhu Q, He J, Zhou W, Zhang H, Tang T, Zhang W. Soft-hard hybrid covalent-network polymer sponges with super resilience, recoverable energy dissipation and fatigue resistance under large deformation. Mater Sci Eng C Mater Biol Appl, 2021 Jul;1 26: 112185. doi: 10.1016/j.msec.2021.112185. (I区,IF 7.32,TOP)
9. Ruixue Yin*, Xu Qian, Liangfa Kang, Kemin Wang*, Hongbo Zhang, Shih-Mo Yang, Wenjun Zhang. A step towards glucose control with a novel nanomagnetic-insulin for diabetes care. International Journal of Pharmaceutics, 2021, 601: 120587. (II区,IF 5.87,TOP)
10. Wang, K. , Kang, L. , Lu, Y. , Zhu, Q. , & Yin, R, Highly porous tissue scaffolds based on cyclic acetals with tunable hydrophilicity and degradation behavior[J]. Polymers for Advanced Technologies, 2021, 32(5), 1997-2006. (III区,IF 3.61)
11. Yingjie Cai, Dasheng Yang, Ruixue Yin*, Yang Gao*, Hongbo Zhang* and Wenjun Zhang, An enzyme-free capacitive glucose sensor based on dual-network glucose-responsive hydrogel and coplanar electrode, Analyst, 2021,146, 213-221. (publication: 2020.10.25) (II区,IF 4.61)
12. Ruixue Yin*, MeirongBai, JingHe, JunNie, WenjunZhang*. Concanavalin A-sugar affinity based system: Binding interactions, principle of glucose-responsiveness, and modulated insulin release for diabetes care. International Journal of Biological Macromolecules, 2019, 124, 724-732. (II区,IF: 6.95,TOP)
13. Ruixue Yin*, Jing He, Meirong Bai, Cong Huang, Kemin Wang*, Hongbo Zhang, Shih-Mo Yang, W.J. Zhang. Engineering Synthetic Artificial Pancreas Using Chitosan Hydrogels Integrated with Glucose-Responsive Microspheres for Insulin Delivery, Materials Science and Engineering: C, 2019,96,374-382. (I区,IF: 7.32,TOP)