
郜磊
2012-2016 哈尔滨工业大学,本科
2016-2022 中国科学院大学/国家纳米科学中心,博士
2022至今 北京脑科学与类脑研究所,青年学者
与刚性电极相比,柔性神经电极的机械性能与脑组织更加匹配,长期免疫反应更小。我们实验室将结合新型的电极结构、电极材料和植入方法,通过微纳加工开发出柔性更高、植入损伤更小、通道更多、长期检测性能更好的柔性神经电极,并将其应用于在体神经元集群电活动的长期稳定测量。

1. Gao L*CA, Lv S*, Shang Y, Guan S, Tian H, Fang Y, Wang JCA, Li HCA. (2024) Free-standing carbon nanotube embroidered graphene film electrode array for stable neural interfacing. Nano Letters, 24(3): 829-835.
2. Yang S, Xu K, Guan S, Zou L, Gao L, Wang J, Tian H, Li H, Fang Y, Li HCA. (2023) Polymer nanofiber network reinforced gold electrode array for neural activity recording. Biomedical Engineering Letters, 13(2): 111-118.
3. Gao L*, Wang J*, Zhao Y*, Li H, Liu M, Ding J, Tian H, Guan S, Fang YCA. (2022) Free-standing nanofilm electrode arrays for long-term stable neural interfacings. Advanced Materials, 34(5), 2107343.
4. Zou L*, Tian H*, Guan S, Ding J, Gao L, Wang J, Fang YCA. (2021) Self-assembled multifunctional neural probes for precise integration of optogenetics and electrophysiology. Nature Communications, 12(1): 1-9.
5. Zou Y*, Wang J*CA, Guan S, Zou L, Gao L, Li H, Fang Y, Wang CCA. (2021) Anti-fouling peptide functionalization of ultraflexible neural probes for long-term neural activity recordings in the brain. Biosensors and Bioelectronics, 192, 113477.
6. Gao L* Wang J*, Guan S, Du M, Wu K, Xu K, Zou L, Tian H, Fang YCA. (2019) Magnetic actuation of flexible microelectrode arrays for neural activity recordings. Nano Letters, 19(11): 8032-8039.
7. Du M*, Guan S*, Gao L, Lv S, Yang S, Shi J, Wang J, Li HCA, Fang YCA. (2019) Flexible micropillar electrode arrays for in vivo neural activity recordings. Small, 15(20): 1900582.
8. Guan S*, Wang J*, Gu X*, Zhao Y, Hou R, Fan H, Zou L, Gao L, Du M, Li CCA, Fang YCA. (2019) Elastocapillary self-assembled neurotassels for stable neural activity recordings. Science Advances, 5(3): eaav2842.


