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Molecular Mechanism in the Brain : A Computational Perspective 강의 ‘지식 표현 및 추론’ 중간 발표

Molecular Mechanism in the Brain : A Computational Perspective 강의 ‘지식 표현 및 추론’ 중간 발표 구본웅 , 협동과정 뇌과학 전공 2002 년 5 월 1 일 ( 수 ). Structure. 2. Synaptic Facilitation. 3. Posttetanic Potentiation. 4. Long-Term Potentiation. 1. 2. 1. NMDA : N-Mthyl-D-Aspartate

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Molecular Mechanism in the Brain : A Computational Perspective 강의 ‘지식 표현 및 추론’ 중간 발표

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  1. Molecular Mechanism in the Brain: A Computational Perspective • 강의 ‘지식 표현 및 추론’ 중간 발표 • 구본웅, 협동과정 뇌과학 전공 • 2002 년 5 월 1 일 (수) 구본웅, 협동과정 뇌과학 전공

  2. Structure 구본웅, 협동과정 뇌과학 전공

  3. 2. Synaptic Facilitation 구본웅, 협동과정 뇌과학 전공

  4. 3. Posttetanic Potentiation 구본웅, 협동과정 뇌과학 전공

  5. 4. Long-Term Potentiation 1 2 1. NMDA : N-Mthyl-D-Aspartate 2. Q/K : Qisqualate/Kainate 구본웅, 협동과정 뇌과학 전공

  6. 5. Neuromodulation 1 2 1. ACh : AcetylCholine 2. GnRH : Gonadotrophin-Releasing Hormone 구본웅, 협동과정 뇌과학 전공

  7. 1 6. Locus Coeruleus 1. TH : Tyrosin Hydroxylase 구본웅, 협동과정 뇌과학 전공

  8. 7. Gene Expression 구본웅, 협동과정 뇌과학 전공

  9. 8. Trophic Factor 구본웅, 협동과정 뇌과학 전공

  10. 9. Summary Initial State Molecular Mechanism Trantient Change in Synaptic Efficacy Change in the Structure 구본웅, 협동과정 뇌과학 전공

  11. 10. Conclusion (1) Molecular Mechanism Short-term Memory 구본웅, 협동과정 뇌과학 전공

  12. 11. Conclusion (2) Short-term Memory Molecular Mechanism Long-term Memory 구본웅, 협동과정 뇌과학 전공

  13. 그릇 12. Conclusion (3) Perception, Cognition Molecular Mechanism 구본웅, 협동과정 뇌과학 전공

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