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Petitmengin C, Bitbol M, Nissou JM, Pachoud B, Curalucci H, Cermolacce M, Vion-Dury J
(2009) Listening from within. J Conscious Stud 16:252 - 284
Rabiner LR, Gold B (1975) Theory and application of digital signal processing. Prentice Hall,
Englewood Cliffs, NJ
Rath M, Rocchesso D (2004) Informative sonic feedback for continuous human - machine
interaction controlling a sound model of a rolling ball. IEEE Multimedia Spec Interact
Sonification 12(2):60 - 69
Risset JC (1965) Computer study of trumpet tones. J Acoust Soc Am 33:912
Roads C (1978) Automated granular synthesis of sound. Comput Music J 2(2):61
62
Rugg MD, Coles MGH (1995) Electrophysiology of mind. Event-related brain potentials and
cognition, number 25. In:
-
, Oxford University Press, chapter The ERP and
Cognitive Psychology: Conceptual issues, pp 27
'
Oxford Psychology
'
-
39
Schaeffer P (1966) Trait
é
des objets musicaux, du Seuil (ed)
Sch
n D, Ystad S, Kronland-Martinet R, Besson M (2010) The evocative power of sounds:
conceptual priming between words and nonverbal sounds. J Cogn Neurosci 22(5):1026
ö
-
1035
Smith JO (1992) Physical modeling using digital waveguides. Comput Music J 16(4):74
87
Stoelinga C, Chaigne A (2007) Time-domain modeling and simulation of rolling objects. Acta
Acustica united Acustica 93(2):290
-
304
Thoret E, Aramaki M, Gondre C, Kronland-Martinet R, Ystad S (2013) Controlling a non linear
friction model for evocative sound synthesis applications. In: Proceedings of the 16th
international conference on digital audio effects (DAFx-13), Maynooth, Ireland
Thoret E, Aramaki M, Kronland-Martinet R, Velay J, Ystad S (2014) From sound to shape:
auditory perception of drawing movements. J Exp Psychol Hum Percept Perform
Thoret E, Aramaki M, Kronland-Martinet R, Ystad S (2013) Post-proceedings 9th International
Symposium on Computer Music Modeling and Retrieval (CMMR 2012), number 7900. In:
Lecture notes in computer science, Springer, Berlin, Heidelberg, chapter reenacting sensori-
motor features of drawing movements from friction sounds
V ä ljam ä e A, Steffert T, Holland S, Marimon X, Benitez R, Mealla S, Oliveira A, Jord à S (2013) A
review of real-time EEG soni cation research. In: Proceedings of the 19th international
conference on auditory display (ICAD 2013), Lodz, Poland, pp 85 - 93
van den Doel K, Kry PG, Pai DK (2001) Foleyautomatic: physically-based sound effects for
interactive simulation and animation. In: Proceedings of SIGGRAPH 2001, computer graphics
proceedings, annual conference series, pp 537 - 544
Van Petten C, Rheinfelder H (1995) Conceptual relationships between spoken words and
environmental
-
sounds:
event-related brain potential measures. Neuropsychologia 33
508
Vanderveer NJ (1979) Ecological acoustics: human perception of environmental sounds, PhD
thesis, Georgia Inst. Technol
Varela F (1989) Invitation aux sciences cognitives. Seuil, Paris
Varela F (1996) Neurophenomenology: a methodological
(4):485
-
remedy for
the hard problem.
335
Varela F, Thompson E, Rosch E (1991) The embodied mind: cognitive science and human
experience. MIT Press, Cambridge, MA, USA
Verron C, Aramaki M, Kronland-Martinet R, Pallone G (2010) A 3D immersive synthesizer for
environmental sounds. IEEE Trans Audio Speech Lang Process 18(6):1550
J Conscious Stud 3:330
-
1561
Verron C, Pallone G, Aramaki M, Kronland-Martinet R (2009) Controlling a spatialized
environmental sound synthesizer. Proceedings of the IEEE workshop on applications of signal
processing to audio and acoustics (WASPAA). New Paltz, NY, pp 321
-
324
Viviani P (2002) Motor competence in the perception of dynamic events: a tutorial. In: Prinz W,
Hommel B (eds) Common mechanisms in perception and action. Oxford University Press,
New York, NY, pp 406
-
442
Viviani P, Redolfi M, Baud-Bovy G (1997) Perceiving and tracking kinaesthetic stimuli: further
evidence for motor-perceptual interactions. J Exp Psychol Hum Percept Perform 23:1232 - 1252
-
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