Brain-Computer Interfaces: Principles and Practice

Brain-Computer Interfaces: Principles and Practice
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发表时间:
2012-01
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通讯作者:
J. Wolpaw;E. Wolpaw
J. Wolpaw;E. Wolpaw
中科院分区:
其他
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作者:
J. Wolpaw;E. Wolpaw

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第一部分:导言脑机接口:阳光下的新事物。Wolpaw和Elizabeth Winter Wolpaw第二部分:脑机接口的大脑信号2。运动皮层及相关区的神经元活动。米勒和尼古拉斯Hatsopoulos 3.大脑产生的电场和磁场。Nunez 4.反映大脑代谢活动的信号。Ramsey第三部分:BCI设计、实现和操作5.从大脑内部获取大脑信号Kevin Otto,Kip A.达里尔?路德维希第六章.从大脑外部获取大脑信号Ramesh Srinivasan 7. BCI信号处理:特征提取Dean J. Krusienski,Dennis J.麦克法兰和Jose C.第八章. BCI信号处理:特征翻译Dennis J.麦克法兰和Dean J. Krusienski 9. BCI硬件和软件J. Adam Wilson,Christoph Guger,and Gerwin沙尔克10. BCI操作协议Steven G.作者:Brendan Z. Allison,and Jonathan R.第十一章. BCI应用Jane E.哈金斯和黛布拉Zeitlin第四部分:现有的脑机接口12.使用P300事件相关电位的BCI Sellers,Yael Arbel,and Emanuel Donchin 13.使用感觉运动节律的脑机接口Gert Pfurtscheller和Dennis J.麦克法兰14.使用稳态视觉诱发电位或慢速皮质电位的脑机接口Brendan Z.艾莉森,约瑟夫·弗勒和克里斯塔·纽珀15.使用皮层电图(ECoG)活动的BCI Gerwin沙尔克16.使用记录在运动皮层中的信号的脑机接口John P. Donoghue 17.使用记录在顶叶或前运动皮层中的信号的脑机接口Hansjorg Scherberger 18.使用脑代谢信号的脑机接口Ranganatha Sitaram,Sangkyung Lee和Niels Birbaumer第五部分:使用脑机接口19. BCI用户及其需求Hochberg和Kim D.安德森20.脑机接口的临床评价Theresa M.作者:Eric W. Sellers和Jonathan R.第二十一章.传播:将BCI提供给需要它们的人Frances J.R.里士满和杰拉尔德E.第二十二章. BCI治疗应用改善脑功能Janis J. Daly和Ranganatha Sitaram 23.普通人群的BCI应用Benjamin Blankertz、Michael Tangermann和Klaus-Robert Mu?ller 24. BCI研究中的伦理问题。第六部分:结论25.脑机接口的未来:满足期望。Wolpaw和Elizabeth Winter Wolpaw指数
Contributors PART I: INTRODUCTION 1. Brain-Computer Interfaces: Something New under the Sun Jonathan R. Wolpaw and Elizabeth Winter Wolpaw PART II: BRAIN SIGNALS FOR BCIs 2. Neuronal Activity in Motor Cortex and Related Areas Lee E. Miller and Nicholas Hatsopoulos 3. Electric and Magnetic Fields Produced by the Brain Paul L. Nunez 4. Signals Reflecting Brain Metabolic Activity Nick F. Ramsey PART III: BCI DESIGN, IMPLEMENTATION, AND OPERATION 5. Acquiring Brain Signals from Within the Brain Kevin Otto, Kip A. Ludwig, Daryl R. Kipke 6. Acquiring Brain Signals from Outside the Brain Ramesh Srinivasan 7. BCI Signal Processing: Feature Extraction Dean J. Krusienski, Dennis J. McFarland, and Jose C. Principe 8. BCI Signal Processing: Feature Translation Dennis J. McFarland and Dean J. Krusienski 9. BCI Hardware and Software J. Adam Wilson, Christoph Guger, and Gerwin Schalk 10. BCI Operating Protocols Steven G. Mason, Brendan Z. Allison, and Jonathan R. Wolpaw 11. BCI Applications Jane E. Huggins and Debra Zeitlin PART IV: EXISTING BCIs 12. BCIs that Use P300 Event-Related Potentials Eric W. Sellers, Yael Arbel, and Emanuel Donchin 13. BCIs that Use Sensorimotor Rhythms Gert Pfurtscheller and Dennis J. McFarland 14. BCIs that Use Steady-State Visual Evoked Potentials or Slow Cortical Potentials Brendan Z. Allison, Josef Faller, and Christa Neuper 15. BCIs that Use Electrocorticographic (ECoG) Activity Gerwin Schalk 16. BCIs that Use Signals Recorded in Motor Cortex John P. Donoghue 17. BCIs that Use Signals Recorded in Parietal or Premotor Cortex Hansjorg Scherberger 18. BCIs that Use Brain Metabolic Signals Ranganatha Sitaram, Sangkyung Lee, and Niels Birbaumer PART V: USING BCIs 19. BCI Users and Their Needs Leigh R. Hochberg and Kim D. Anderson 20. Clinical Evaluation of BCIs Theresa M. Vaughan, Eric W. Sellers, and Jonathan R. Wolpaw 21. Dissemination: Getting BCIs to the People Who Need Them Frances J.R. Richmond and Gerald E. Loeb 22. BCI Therapeutic Applications for Improving Brain Function Janis J. Daly and Ranganatha Sitaram 23. BCI Applications for the General Population Benjamin Blankertz, Michael Tangermann, and Klaus-Robert Mu?ller 24. Ethical Issues in BCI Research Mary-Jane Schneider, Joseph J. Fins, and Jonathan R. Wolpaw PART VI: CONCLUSION 25. The Future of BCIs: Meeting the Expectations Jonathan R. Wolpaw and Elizabeth Winter Wolpaw Index