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Results 31-40 of 111 (Search time: 0.005 seconds).

A 3D-Printed Sensor for Monitoring Biosignals in Small Animals

  • Cho, Sung-Joon
  • Byun, Donghak
  • Nam, Tai-Seung
  • Choi, Seok-Yong
  • Lee, Byung-Geun
  • Kim, Myeong-Kyu
  • Kim, So Hee
  • 2017-10
  • Cho, Sung-Joon. (2017-10). A 3D-Printed Sensor for Monitoring Biosignals in Small Animals. Journal of Healthcare Engineering, 2017, 1–6. doi: 10.1155/2017/9053764
  • Hindawi Limited
  • View : 1102
  • Download : 132

High-performance, polymer-based direct cellular interfaces for electrical stimulation and recording

  • Kim, Seong Min
  • Kim, Na Ra
  • Kim, Young Seok
  • Baek, Min Seo
  • Yoo, Min Su
  • Kim, Dong Yoon
  • Lee, Won June
  • Kang, Dong Hee
  • Kim, Sohee
  • Lee, Kwang Hee
  • et al
  • 2018-04
  • Kim, Seong Min. (2018-04). High-performance, polymer-based direct cellular interfaces for electrical stimulation and recording. doi: 10.1038/s41427-018-0014-9
  • Nature Publishing Group
  • View : 944
  • Download : 267
  • Eom, Kyeongho
  • Park, Minju
  • Lee, Han-Sol
  • Ku, Seung-Beom
  • Kim, Namju
  • Cha, Seongkwang
  • Goo, Yong Sook
  • Kim, Sohee
  • Kim, Seong-Woo
  • Lee, Hyung-Min
  • 2023-11
  • Eom, Kyeongho. (2023-11). A Low-Stimulus-Scattering Pixel-Sharing Sub-Retinal Prosthesis SoC With Time-Based Photodiode Sensing and Per-Pixel Dynamic Voltage Scaling. IEEE Journal of Solid-State Circuits, 58(11), 2976–2989. doi: 10.1109/JSSC.2023.3305521
  • Institute of Electrical and Electronics Engineers Inc.
  • View : 482
  • Download : 0

Hybrid Bionic Nerve Interface for Application in Bionic Limbs

  • Cho, Youngjun
  • Jeong, Hyung Hwa
  • Shin, Heejae
  • Pak, Changsik John
  • Cho, Jeongmok
  • Kim, Yongwoo
  • Kim, Donggeon
  • Kim, Taehyeon
  • Kim, Hoijun
  • Kim, Sohee
  • et al
  • 2023-12
  • Cho, Youngjun. (2023-12). Hybrid Bionic Nerve Interface for Application in Bionic Limbs. Advanced Science, 10(35). doi: 10.1002/advs.202303728
  • John Wiley and Sons Inc
  • View : 418
  • Download : 46
  • Lee, Kyeong Jae
  • Shin, Yong Beom
  • Park, Ho Eun
  • Choi, Suro
  • de Oliveira, Jean G.
  • Hong, Daun
  • Kim, Sohee
  • Yoon, Jin A
  • 2023-08
  • Lee, Kyeong Jae. (2023-08). Quantitative non-nutritive sucking measurement as a predictor of oral feeding readiness in newborns. Frontiers in Pediatrics, 11. doi: 10.3389/fped.2023.1143416
  • Frontiers Media SA
  • View : 306
  • Download : 0
  • Lee, Kyeong Jae
  • Park, Byungwook
  • Jang, Jae-Won
  • Kim, Sohee
  • 2023-06
  • Lee, Kyeong Jae. (2023-06). Magnetic stimulation of the sciatic nerve using an implantable high-inductance coil with low-intensity current. Journal of Neural Engineering, 20(3). doi: 10.1088/1741-2552/acdcbb
  • Institute of Physics Publishing
  • View : 335
  • Download : 0

A Batteryless, Wireless Strain Sensor Using Resonant Frequency Modulation

  • 2018-11
  • Lee, Kyeong Jae. (2018-11). A Batteryless, Wireless Strain Sensor Using Resonant Frequency Modulation. Sensors, 18(11), 1–11. doi: 10.3390/s18113955
  • Multidisciplinary Digital Publishing Institute (MDPI)
  • View : 827
  • Download : 203

A Microfluidic System for Stable and Continuous EEG Monitoring from Multiple Larval Zebrafish

  • Lee, Yuhyun
  • Seo, Hee Won
  • Lee, Kyeong Jae
  • Jang, Jae-Won
  • Kim, Sohee
  • 2020-10
  • Lee, Yuhyun. (2020-10). A Microfluidic System for Stable and Continuous EEG Monitoring from Multiple Larval Zebrafish. doi: 10.3390/s20205903
  • Multidisciplinary Digital Publishing Institute (MDPI)
  • View : 765
  • Download : 225

Zebrafish EEG predicts the efficacy of antiepileptic drugs

  • Shin, Jun-Nyeong
  • Lee, Ki-Baek
  • Butterworth, Woojae
  • Park, Soo-Kyung
  • Kim, Jung-Yeon
  • Kim, Sohee
  • 2022-12
  • Shin, Jun-Nyeong. (2022-12). Zebrafish EEG predicts the efficacy of antiepileptic drugs. Frontiers in Pharmacology, 13. doi: 10.3389/fphar.2022.1055424
  • Frontiers Media S.A.
  • View : 500
  • Download : 113
  • Park, Byungwook
  • Jang, Jae-Won
  • Kim, Sohee
  • 2022-11
  • Park, Byungwook. (2022-11). In-vivo recording of sensory signals from peripheral nerves using flexible 3D neural electrodes. Micro and Nano Systems Letters, 10(1). doi: 10.1186/s40486-022-00158-3
  • Society of Micro and Nano Systems
  • View : 339
  • Download : 0