뇌파 및 심전도 복합 생체신호를 이용한 실시간 감정인식 인터페이스 연구

논문상세정보
' 뇌파 및 심전도 복합 생체신호를 이용한 실시간 감정인식 인터페이스 연구' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • ecg
  • eeg
  • emotion-recognition
  • 감정 인식
  • 뇌파
  • 심전도
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
1,174 0

0.0%

' 뇌파 및 심전도 복합 생체신호를 이용한 실시간 감정인식 인터페이스 연구' 의 참고문헌

  • Usability Test of ‘Paldokangsan3’ a Walking Game for the Elderly
    KyungSik Kim Journal of Korea Game Society 15 (1) : 145 ~ 154 [2015]
  • The research on emotion recognition from ECG signal
    Cai J Proc. of the IEEE ITCS 2009 International Conference 1 : 497 ~ 500 [2009]
  • The removal of the eye-movement artifact from the EEG by regression analysis in the frequency domain
    Woestenburg, J. C Biological psychology 16 (1) : 127 ~ 147 [1983]
  • The relaxation biofeedback system with computer and heart rate variability interaction : 35 ~ 38
    Takayuki, H [2003]
  • Sympathetic nervous system activity in stress and biofeedback relaxation
    Shusterman, V Engineering in Medicine and Biology Magazine, IEEE 24 (2) : 52 ~ 57 [2005]
  • SmartCar: detecting driver stress
    Jennifer H Proc. of the 15th IEEE Pattern Recognition 2000 International Conference 4 : 218 ~ 221 [2000]
  • Real-time EEG-based human emotion recognition and visualization
    Liu, Y Porc of the IEEE Cyberworlds 2010 International Conference : 262 ~ 269 [2010]
  • Motivation to learn: From theory to practice
    Stipek, D Allyn and Bacon [1993]
  • Handbook of cognition and emotion
    Ekman, P Handbook of cognition and emotion pp226-232 : 226 ~ 232 [1999]
  • EEG-based emotion recognition using hybrid filtering and higher order crossings
    Petrantonakis, P. C Proc. of the 3rd IEEE ACII 2009 International Conference : 1 ~ 6 [2009]
  • EEG-based asynchronous BCI control of a car in 3D virtual reality environments
    QiBin Zhao Chinese Science Bulletin 54 (1) : 78 ~ 87 [2009]
  • Deap: A database for emotion analysis; using physiological signals
    Koelstra, S IEEE Trans. Affective Computing 3 (1) : 18 ~ 31 [2012]
  • Control of a two-dimensional movement signal by a noninvasive brain-computer interface in humans
    Jonathan R. Wolpaw Proceedings of the National Academy of Sciences of the United States of America 101 (51) : 17849 ~ 17854 [2004]
  • An EEG-based brain-computer interface for cursor control
    Jonathan R. Wolpaw Electroencephalography and clinical neurophysiology 78 (3) : 252 ~ 259 [1991]
  • A new self-report scale of intrinsic versus extrinsic orientation in the classroom: Motivational and informational components
    Harter, S Developmental psychology 17 (3) : 300 ~ 312 [1981]
  • A Gesture Interface based on Hologram and Haptics Environments for Interactive and Immersive Experiences
    Hae-Gul Pyun Journal of Korea Game Society 15 (1) : 27 ~ 34 [2015]