11.12.2012 Views

D2.1 Requirements and Specification - CORBYS

D2.1 Requirements and Specification - CORBYS

D2.1 Requirements and Specification - CORBYS

SHOW MORE
SHOW LESS

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

<strong>D2.1</strong> <strong>Requirements</strong> <strong>and</strong> <strong>Specification</strong><br />

Coles, M. Bekkering, H. Van Schie, H., Mars, R. (2004). Modulation of activity in medial frontal <strong>and</strong><br />

motor cortices during error observation. Nature Neuroscience, 7:549–554.<br />

Coles, M.G.H., Gratton, G. <strong>and</strong> Donchin, E. (1988). Detecting early communication: using measures of<br />

movement-related potentials to illuminate human information processing. Biol Psychol, 26:69–89, 1988.<br />

Colombo, G., Wirz, M., <strong>and</strong> Dietz, V. (2001). Driven gait orthosis for improvement of locomotor training<br />

in paraplegic patients, Spinal Cord, vol. 39, pp. 252-253.<br />

CoolBOT Project, n.d. CoolBOT Project’s site. [online] Available at:http://www.coolbotproject.org<br />

[Accessed 13 May 2011].<br />

Corradini, A., Mehta, M., Bernsen, N.O., Martin , J.-C., Abrilian, S. (2005). Multimodal Input Fusion in<br />

Human-Computer Interaction: On the Example of the NICE Project. Data Fusion for Situation<br />

Monitoring, Incident Detection, Alert <strong>and</strong> Response Management, E. Shahbazian et al. Ed. IOS Press.<br />

Costa, N. <strong>and</strong> Caldwell, D. (2006). Control of a biomimetic "soft-actuated" 10 DoF lower body<br />

exoskeleton, in Proceedings of the IEEE/RAS-EMBS International Conference on Biomedical Robotics<br />

<strong>and</strong> Biomechatronics, pp. 495-501.<br />

Cover, T. M. <strong>and</strong> Thomas, J. A. (1991). Elements of Information Theory. Wiley, New York.<br />

CRASAR-Center for Robot-Assisted Search <strong>and</strong> Rescue at Texas A&M University [online] Available at:<br />

<br />

Croft, R. J. <strong>and</strong> Barry, R. J. (2000). Removal of ocular artifact from the eeg: a review. Neurophysiol. Clin.,<br />

30(1):5–19.<br />

Csíkszentmihályi, M. (1978). Beyond Boredom <strong>and</strong> Anxiety: Experiencing Flow in Work <strong>and</strong> Play.<br />

Cambridge University Press, Cambridge.<br />

Dal Seno, B. (2009). Toward An Integrated P300-And ErrP-Based Brain-Computer Interface. PhD thesis,<br />

Politecnico di Milano.<br />

Darken, C. J. (2005). Towards learned anticipation in complex stochastic environments. In Proc. Artificial<br />

Intelligence for Interactive Digital Entertainment Conference (AIIDE).<br />

Das, S., Grey, R., Gonsalves, P. (2002). Situation Assessment via Bayesian Belief Networks, Proceedings<br />

of the fifth International Conference on Information Fusion, Annapolis, Maryl<strong>and</strong><br />

Deecke, L., Grozinger, B. <strong>and</strong> Kornhuber, H.H. (1976). Voluntary finger movement in man: cerebral<br />

potentials <strong>and</strong> theory. Biol Cybernet, 23:99–119.<br />

Deecke, L., Scheid, P. <strong>and</strong> Kornhuber, H.H. (1969). Distribution of readiness potential, pre-motion<br />

positivity <strong>and</strong> motor potential of the human cerebral cortex preceding voluntary finger movement. Exp<br />

Brain Res, 7:158–168.<br />

Delorme, A. <strong>and</strong> Makeig, S. (2004). Eeglab: an open source toolbox for analysis of single-trial eeg<br />

dynamics. Journal of Neuroscience Methods, 134:9–21.<br />

Der, R. (2000). Selforganized robot behavior from the principle of homeokinesis. In Groß, H.-M., Debes,<br />

K., <strong>and</strong> Böhme, H.-J., editors, Proc. Workhop SOAVE ’2000 (Selbstorganisation von adaptivem<br />

Verhalten), volume 643 of Fortschritt-Berichte VDI, Reihe 10, pages 39–46, Ilmenau. VDI Verlag.<br />

Der, R. (2001). Self-organized acqusition of situated behavior. Theory Biosci., 120:1–9.<br />

Der, R., Hesse, F., <strong>and</strong> Martius, G. (2006). Rocking stumper <strong>and</strong> jumping snake from a dynamical system<br />

approach to artificial life. J. Adaptive Behavior, 14(2):105–115.<br />

Der, R., Steinmetz, U., <strong>and</strong> Pasemann, F. (1999). Homeokinesis – a new principle to back up evolution<br />

with learning. In Mohammadian, M., editor, Computational Intelligence for Modelling, Control, <strong>and</strong><br />

Automation, volume 55 of Concurrent Systems Engineering Series, pages 43–47. IOS Press.<br />

Deutsche Industrie Norm für Begriffe der Informationsverarbeitung: Teil 5: Begriffe, Aufbau digitaler<br />

Rechensysteme<br />

182

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!