Follow
Namsun Chou
Namsun Chou
Senior researcher, Korea Brain Resaerch Institute (KBRI)
Verified email at kbri.re.kr - Homepage
Title
Cited by
Cited by
Year
A method to pattern silver nanowires directly on wafer-scale PDMS substrate and its applications
N Chou, Y Kim, S Kim
ACS Applied Materials & Interfaces 8 (9), 6269-6276, 2016
692016
A largely deformable surface type neural electrode array based on PDMS
N Chou, S Yoo, S Kim
IEEE Transactions on neural systems and rehabilitation engineering 21 (4 …, 2012
572012
Evaluation of sub-micrometer parylene C films as an insulation layer using electrochemical impedance spectroscopy
W Chun, N Chou, S Cho, S Yang, S Kim
Progress in Organic Coatings 77 (2), 537-547, 2014
402014
Crack-free and reliable lithographical patterning methods on PDMS substrate
N Chou, J Jeong, S Kim
Journal of Micromechanics and Microengineering 23 (12), 125035, 2013
372013
A MEMS ultrasound stimulation system for modulation of neural circuits with high spatial resolution in vitro
J Lee, K Ko, H Shin, SJ Oh, CJ Lee, N Chou, N Choi, M Tack Oh, ...
Microsystems & Nanoengineering 5 (1), 28, 2019
322019
A 3D microscaffold cochlear electrode array for steroid elution
J Jang, J Kim, YC Kim, S Kim, N Chou, S Lee, YH Choung, S Kim, ...
Advanced healthcare materials 8 (20), 1900379, 2019
282019
Long-term characterization of neural electrodes based on parylene-caulked polydimethylsiloxane substrate
J Jeong, N Chou, S Kim
Biomedical microdevices 18, 1-9, 2016
252016
Fabrication of stretchable and flexible electrodes based on PDMS substrate
N Chou, S Yoo, S Kim
2012 IEEE 25th International Conference on Micro Electro Mechanical Systems …, 2012
202012
A 3D flexible neural interface based on a microfluidic interconnection cable capable of chemical delivery
YN Kang, N Chou, JW Jang, HK Choe, S Kim
Microsystems & nanoengineering 7 (1), 66, 2021
162021
A batteryless, wireless strain sensor using resonant frequency modulation
KJ Lee, N Chou, S Kim
Sensors 18 (11), 3955, 2018
142018
A Multimodal Multichannel Neural Activity Readout IC with 0.7μW/Channel Ca2+-Probe-Based Fluorescence Recording and Electrical Recording
T Lee, JH Park, JH Cha, N Chou, D Jang, JH Kim, IJ Cho, SJ Kim, M Je
2019 Symposium on VLSI Circuits, C290-C291, 2019
132019
An intrafascicular neural interface with enhanced interconnection for recording of peripheral nerve signals
YN Kang, N Chou, JW Jang, D Byun, H Kang, DJ Moon, J Kim, S Kim
IEEE Transactions on Neural Systems and Rehabilitation Engineering 27 (6 …, 2019
122019
A Multimodal Multi-Shank Fluorescence Neural Probe for Cell-Type-Specific Electrophysiology in Multiple Regions across a Neural Circuit
N Chou, H Shin, K Kim, U Chae, M Jang, UJ Jeong, KS Hwang, B Yi, ...
Advanced science, 2021
112021
A minimally invasive flexible electrode array for simultaneous recording of ECoG signals from multiple brain regions†
UJ Jeong, J Lee, N Chou, K Kim, H Shin, U Chea, HY Yu, IJ Cho
Lab on a chip, 2021
112021
Transformation of 2D planes into 3D soft and flexible structures with embedded electrical functionality
H Moon, N Chou, HW Seo, K Lee, J Park, S Kim
ACS applied materials & interfaces 11 (39), 36186-36195, 2019
112019
Interfacial and surface analysis of parylene C-modified PDMS substrates for soft bioelectronics
N Chou, H Moon, J Park, S Kim
Progress in Organic Coatings 157, 106309, 2021
82021
Large-sized out-of-plane stretchable electrodes based on poly-dimethylsiloxane substrate
N Chou, J Lee, S Kim
Applied Physics Letters 105 (24), 2014
82014
MEMS-based microelectrode technologies capable of penetrating neural tissues
N Chou, D Byun, S Kim
Biomedical Engineering Letters 4, 109-119, 2014
72014
A fabrication method of out-of-plane stretchable and flexible electrodes based on PDMS
N Chou, S Kim
Micro/Nano Materials, Devices, and Systems 8923, 510-515, 2013
62013
A multimodal neural activity readout integrated circuit for recording fluorescence and electrical signals
T Lee, JH Park, N Chou, IJ Cho, SJ Kim, M Je
IEEE Access 9, 118610-118623, 2021
42021
The system can't perform the operation now. Try again later.
Articles 1–20