Brain Evoked Potential Latencies Optimization for Spatial Auditory Brain–Computer Interface

Author:

Cai Zhenyu,Makino Shoji,Rutkowski Tomasz M.

Publisher

Springer Science and Business Media LLC

Subject

Cognitive Neuroscience,Computer Science Applications,Computer Vision and Pattern Recognition

Reference13 articles.

1. Wolpaw J, Wolpaw EW, editors. Brain–computer interfaces: principles and practice. Oxford: Oxford University Press; 2012.

2. Schnupp J, Nelken I, King A. Auditory neuroscience: making sense of sound. Cambridge: MIT Press; 2010.

3. Rutkowski TM, Cichocki A, Mandic DP. Spatial auditory paradigms for brain computer/machine interfacing. In: International workshop on the principles and applications of spatial hearing 2009 (IWPASH 2009). Proceedings of the international workshop. Miyagi-Zao Royal Hotel, Sendai, Japan; 2009. p. P5.

4. Schreuder M, Blankertz B, Tangermann M. A new auditory multi-class brain-computer interface paradigm: spatial hearing as an informative cue. PLoS ONE. 2010;5: e9813.

5. Cai Z, Terasawa H, Makino S, Yamada T, Rutkowski TM. Sound timbre and spatial location as informative cues in auditory BCI—brain evoked potential enhancement and involuntary eye movements artifacts suppression approach. In: Proceedings of the third APSIPA annual summit and conference (APSIPA ASC 2011). Xi’an, China: APSIPA; 2011. p. paper #241.

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