Showing results 1 to 17 of 17
Issue Date | Title | Author(s) |
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- | 3D electrode fabrication for measurement of neurospheroid differentiation state according to impedance change | Jin Ju Young; You Jin; Jeong Jinwoo; Jungyul Park; Yu-Shik Hwang; Suh, Jun-Kyo; KIM, JINSEOK |
2016-06 | 64-Channel Double-Layered Sieve Electrode with Increased Porosity for Improved Axon Regeneration and High Spatial Resolution | Jeong Jinwoo; Jung woo hyun; Kim Ockchul; Jun-Uk Chu; Inchan Youn; Keehoon Kim; Oh, Sang Rok; Jong Woong Park; KIM, JINSEOK |
- | A Neural Probe with Aligned Optical Fiber Using Fiber Guide Structure for Simultaneous Optogenetic Stimulation and Recording | Lee Boo Yong; Kim Tae Hyung; Jin Ju Young; Choi Won-suk; Sunghee Park; Jeong Jinwoo; Inchan Youn; Jung-Ho Park; KIM, JINSEOK |
- | A Neural Probe with Integrated Light Emitting Diodes Using Batch Process for Optogenetic Stimulation | Choi Won-suk; Ockchul Kim; Booyong Lee; Tae Hyung Kim; Ju-Young Jin; Jeong Jinwoo; Shin, Hyun Joon; Suh, Jun-Kyo; KIM, JINSEOK |
- | A Soft Contact-Lens with Integrated Microfluidic System for Controlled Collection of Basal Tear | Ockchul Kim; Jeong Jinwoo; Song, Yong-Won; KIM, JINSEOK |
- | All-polymer Neural Probe with Optical Waveguide for Optogenetics | Lee Boo Yong; Kim Tae Hyung; Jin Ju Young; Jeong Jinwoo; Choi Won-suk; Jung-Ho Park; KIM, JINSEOK |
- | DEVELOPMENT OF MULTIFUNCTION FLEXIBLE NEURAL PROBE INTEGRATE OPTICAL WAVEGUIDE AND MICROCHANNEL | Kim Tae Hyung; B.Y. Lee; Jeong Jinwoo; KIM, JINSEOK |
- | Development of Multifunction Flexible Neural Probe Integrate Optical waveguide and Microchannel | Lee Boo Yong; Kim Tae Hyung; Jin Ju Young; Jeong Jinwoo; Choi Won-suk; Jung-Ho Park; KIM, JINSEOK |
- | Double-Layer-Structured Neural Electrode with High Channel Density for Peripheral Nerve Interface | Jeong Jinwoo; Jung woo hyun; Sunyoung Jung; Jun-Uk Chu; Inchan Youn; Keehoon Kim; Oh, Sang Rok; Jong Woong Park; KIM, JINSEOK |
- | Flexible Neural Electrodes with Hydrogel Scaffolds for Artificial Neural Networking of Injured Spinal Cord | Jeong Jinwoo; Choi Won-suk; Sunyoung Jung; Jung Woo Hyun; Park HyungDal; Han sungmin; Inchan Youn; Suh, Jun-Kyo; KIM, JINSEOK |
- | Flexible Sieve-Type Electrodes Embedded in Multi-Lumen Hydrogels for in-vivo Neural Signal Sensing of Spinal Cord | Jeong Jinwoo; Choi Won-suk; Kim Tae Hyung; Han sungmin; Inchan Youn; Suh, Jun-Kyo; Choi, Kuiwon; KIM, JINSEOK |
- | Graphene oxide-dispersed polymer waveguides for passively mode-locked fiber ring lasers | Kim Su Jong; 박기철; Jeong Jinwoo; Kim Won-Jun; KIM, JINSEOK; Ki-Hwan Park; Song, Yong-Won |
- | Implantable CNT-Based Sensor for Chondroitin Sulfate Proteoglycans Detection of Glial Scar after Spinal Cord Injury | Jeong Jinwoo; Sehwan Kim; KIM, JINSEOK; Kukjin Chun |
- | Implantable Neural Device Integrated with Regenerative Scaffold for Neural Signal Sensing from Damaged Spinal Cord | Jeong Jinwoo; Kim Tae Hyung; Han sungmin; Inchan Youn; Suh, Jun-Kyo; KIM, JINSEOK |
- | In-vivo Neural Signal Acquisition Using Implantable MEMS Devices | Jeong Jinwoo; Kim Tae Hyung; Han sungmin; Inchan Youn; Kukjin Chun; KIM, JINSEOK |
- | Sieve Type MEMS Neural Electrode for Signal Recording of Spinal Cord | Jeong Jinwoo; Sehwan Kim; Kyuhwan Jung; Kim Tae Hyung; KIM, JINSEOK; Kukjin Chun |
- | Swimming Microscale Robot with Multi-Fingered Microgripper Structure | Jeong Jinwoo; Bomi Yang; Tae Hyung Kim; Ju-Young Jin; Minjun Kim; KIM, JINSEOK |