1 송광섭, "pH에 민감한 그래핀 전계효과 트랜지스터(FET)" 대한전자공학회 53 (53): 117-122, 2016
2 B. Ercan, "The effect of biphasic electrical stimulation on osteoblast function at anodized nanotubular titanium surfaces" 31 : 3684-3693, 2010
3 Z. Q. Feng, "Soft Graphene Nanofibers Designed for the Acceleration of Nerve Growth and Development" 27 : 6462-6468, 2015
4 V. S. Polikov, "Response of brain tissue to chronically implanted neural electrodes" 148 : 1-, 2005
5 H. -G. Oh, "Neuroblastoma cells grown on fluorine or oxygen treated graphene sheets" 131 : 328-331, 2014
6 H. -G. Son, "Micro cell array on silicon substrate using graphene sheet" 196 : 385-387, 2017
7 J. J. Kim, "Graphene-based conformal electronics for epilepsy electrotherapy" 85-86, 2017
8 Y. -J. Lee, "Extremely low frequency electromagnetic fields enhance neuronal differentiation of human mesenchymal stem cells on graphene-based substrates" 15 : S95-S102, 2015
9 S. Y. Park, "Enhanced differentiation of human neural stem cells into neurons on graphene" 23 : H263-H267, 2011
10 A. Kotwal, "Electrical stimulation alters protein adsorption and nerve cell interactions with electrically conducting biomaterials" 22 : 1055-1064, 2001
1 송광섭, "pH에 민감한 그래핀 전계효과 트랜지스터(FET)" 대한전자공학회 53 (53): 117-122, 2016
2 B. Ercan, "The effect of biphasic electrical stimulation on osteoblast function at anodized nanotubular titanium surfaces" 31 : 3684-3693, 2010
3 Z. Q. Feng, "Soft Graphene Nanofibers Designed for the Acceleration of Nerve Growth and Development" 27 : 6462-6468, 2015
4 V. S. Polikov, "Response of brain tissue to chronically implanted neural electrodes" 148 : 1-, 2005
5 H. -G. Oh, "Neuroblastoma cells grown on fluorine or oxygen treated graphene sheets" 131 : 328-331, 2014
6 H. -G. Son, "Micro cell array on silicon substrate using graphene sheet" 196 : 385-387, 2017
7 J. J. Kim, "Graphene-based conformal electronics for epilepsy electrotherapy" 85-86, 2017
8 Y. -J. Lee, "Extremely low frequency electromagnetic fields enhance neuronal differentiation of human mesenchymal stem cells on graphene-based substrates" 15 : S95-S102, 2015
9 S. Y. Park, "Enhanced differentiation of human neural stem cells into neurons on graphene" 23 : H263-H267, 2011
10 A. Kotwal, "Electrical stimulation alters protein adsorption and nerve cell interactions with electrically conducting biomaterials" 22 : 1055-1064, 2001
11 H. S. Mayberg, "Deep brain stimulation for treatmentresistant depression" 45 : 651-660, 2005
12 A. L. Benabid, "Deep brain stimulation for Parkinson’s disease" 13 : 696-706, 2003
13 R. A. Green, "Conducting polymers for neural interfaces: challenges in developing an effective long-term implant" 29 : 3393-3399, 2008
14 Y. J. Huang, "Carbon nanotube rope with electrical stimulation promotes the differentiation and maturity of neural stem cells" 8 : 2869-2877, 2012
15 Y. J. Huang, "Carbon nanotube rope with electrical stimulation promotes the differentiation and maturity of neural stem cells" 8 : 2869-2877, 2012