论文
Xinyi Wang; Longjie Zhong; Wenbin Zhang; Pengde Wu; Minghao Wang*; Dujuan Li; Linxi Dong; Gaofeng Wang;. CRISPR digital sensing: from micronano-collaborative chip to biomolecular detection[J]. ACS Nano, 2025. (一区top) Shang, Siyan; Xu, Yuchen; Jin, Minyi; Ni, Chuner; Jiang, Hao; Wang, Xuanqi; Wang, Xinyi;Cheng,Yuhua; Wang, Minghao; Zhang, Shaomin; Ji, Bowen; Yang, Jie; Wang, Gaofeng; Sawan, Mohamad; Biocompatible dipeptide coated on Pt/PEDOT:PSS modified silicon probes for tissues rejection alleviation, SENSORS AND ACTUATORS B-CHEMICAL, 2025, 424(一区top) Bowen Ji; Fanqi Sun; Jiecheng Guo; Yuhao Zhou; Xiaoli You; Ye Fan; Longchun Wang; Mengfei Xu; Wen Zeng; Jingquan Liu; Minghao Wang; Huijing Hu; Honglong Chang ; Brainmask: an ultrasoft and moist micro-electrocorticography electrode for accurate positioning and long-lasting recordings, Microsystems Nanoengineering, 2023, 9(1): 126-139 (一区top) Jiahui Xu, Minghao Wang, Minyi Jin, Siyan Shang, Chuner Ni, Yili Hu, Xun Sun, Jun Xu, Bowen Ji, Le Li, Yuhua Cheng, Gaofeng Wang; Flexible capacitive pressure sensor based on interdigital electrodes with porous microneedle arrays for physiological signal monitoring. Nanotechnol. Precis. Eng. 1 November 2023; 7 (1): 013003. J. Xu et al., Microneedle Array Electrode With Ag-PPS Modification for Superior Bio-Signal Recording on Skin, in IEEE Sensors Journal, vol. 23, no. 20, pp. 24196-24204, 15 Oct.15, 2023.(二区top) Wang M., Jin M., Wang L., et al. Noise Mitigation Strategies for Silicon-Based Active Neural Optrode. IEEE Sensors Journal, 2023, 23(9):9058-9066.(二区top) Wang, M.; Jin, M., An Active Neural Optrode with Metal Shielding Laser Diode and Electrochemical Modified Microelectrodes for Low Noise Optogenetics, IEEE 4th IFETC,2022. Fan Y., Wang, M.; A Microneedle Array-Based Dry ECG Electrode with High Recording Performance for Healthcare Applications, IEEE 4th IFETC,2022. Wang, M.; Fan, Y.; Li, L.; Wen, F.; Guo, B.; Jin, M.; Xu, J.; Zhou, Y.; Kang, X.; Ji, B.; Cheng, Y.; Wang, G. Flexible Neural Probes with Optical Artifact-Suppressing Modification and Biofriendly Polypeptide Coating. Micromachines 2022, 13(2), 199. Guo B, Fan Y, Wang M*, Cheng Y, Ji B, Chen Y, Wang G. Flexible Neural Probes with Electrochemical Modified Microelectrodes for Artifact-Free Optogenetic Applications. International Journal of Molecular Sciences. 2021; 22(21):11528. (二区top) Jiao, M.; Wang, M.*; Fan, Y.; Guo, B.; Ji, B.; Cheng, Y.; Wang, G. Temperature Compensated Wide-Range Micro Pressure Sensor with Polyimide Anticorrosive Coating for Harsh Environment Applications. Applied Sciences. 2021, 11(19), 9012. Wang M, Guo B, Ji B, et al. Controlled Electrodeposition of Graphene Oxide doped Conductive polymer on Microelectrodes for Low-Noise Optogenetics[J]. IEEE Electron Device Letters, 2021, 42 (3):418-421.(二区) Wang L C, Ge C F, Wang M H, et al. An artefact-resist optrode with internal shielding structure for low-noise neural modulation[J]. Journal of Neural Engineering, 2020, 17(4):046024 (11pp). (二区) Wang L C, Wang M H, Ge C F, et al. The use of a double-layer platinum black-conducting polymer coating for improvement of neural recording and mitigation of photoelectric artifact[J]. Biosensors and Bioelectronics, 2019,145:111661. (一区top ,IF=10.257) Wang M H, Three-dimensional drivable optrode array for high-resolution neural stimulations and recordings in multiple brain regions. Biosensors and Bioelectronics, 2019, 131: 9-16.(一区top ,IF=10.257) Ji B W, Wang M H(共同一作), Flexible bioelectrodes with enhanced wrinkle microstructures for reliableelectrochemical modification and neuromodulation in vivo. Biosensors and Bioelectronics, 2019, 135: 181-191. (一区top ,IF=10.257) Wang M H, Ji B W, Gu X W, et al. Direct electrodeposition of Graphene enhanced conductive polymer on microelectrode for biosensing application[J]. Biosensors and Bioelectronics, 2018, 99: 99-107.(一区top,IF=10.257) Wang M H, Ji B W, Gu X W, et al. A novel assembly method for 3-dimensional microelectrode array withmicro-drive[J]. Sensors & Actuators B Chemical, 2018, 264.(一区top ,IF=7.1) Wang M H, Nikaido K, Kim Y, et al. Flexible cylindrical neural probe with graphene enhanced conductivepolymer for multi-mode BCI applications[C]// IEEE, International Conference on MICRO ElectroMechanical Systems. IEEE, 2017. (EI) Wang M, Yang S, Li H, et al. Double Pulse Electrodeposition of Cu-Ga Precursor Layer for CuGaS2 Solar Energy Thin Film[J]. Journal of the Electrochemical Society, 2013, 160(10):D459-D464.(二区) B Ji*, M Wang. Micro-wrinkle strategy for stable soft neural interface with optimized electroplated PEDOT:PSS [J].Journal of Micromechanics and Microengineering, 2020, 30, 104001. (3区,IF=2.141) B Ji, C Ge, Z Guo, L Wang, M Wang, Z Xie, Y Xu, H Li, C Li* and J Liu*. Flexible and stretchable opto-electric neural interface for low-noise electrocorticogram recordings and neuromodulation in vivo [J]. Biosensors and Bioelectronics, 2020, 153: 112009. (1区top, IF=10.257) Zhou Y, Ji B, Wang M, et al. Implantable Thin Film Devices as Brain-Computer Interfaces: Recent Advances in Design and Fabrication Approaches[J]. Coatings, 2021, 11(2):204. Guo Z, Ji B, Wang M, et al. A Polyimide-Based Flexible Optoelectrodes for Low-Noise Neural Recording[J]. IEEE Electron Device Letters, 2019, PP(99):1-1. (二区,IF=4.221) Ji B, Guo Z, Wang M, et al. Flexible polyimide-based hybrid opto-electric neural interface with 16 channels of micro-LEDs and electrodes[J]. Microsystems & Nanoengineering, 2018, 4(1). Guo Z, Ji B, Wang M, et al. A Polyimide-Based 3-D Ultrathin Bioelectrode With Elastic Sites for Neural Recording[J]. Journal of Microelectromechanical Systems, 2018.
著作
著作: Liu J Q, Tian H C, Kang X Y, Wang M H. Electrodes for Nerve Recording and Stimulation. Springer, 7919字, 2017. 吉博文; 王明浩; 王炫棋 ; 智能传感与检测技术, 电子工业出版社, 2024
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