Information Technology Reference
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Moore, B. C. J. (2003). An introduction to the psychology
of hearing (5th ed.). New York: Academic Press.
Murphy, D., & Neff, F. (2011). Spatial sound for computer
games and virtual reality . In Grimshaw, M. (Ed.), Game
sound technology and player interaction: Concepts and
developments . Hershey, PA: IGI Global.
Morgan, S. (2009). Dynamic game audio ambience:
bringing Prototype's New York City to life. Gamasutra.
Retrieved May 8, 2009, from http://www.gamasutra.com/
view/feature/4043/
Murphy, D. (1999). Spatial sound description in virtual
environments. In Proceedings of the Cambridge Music
Processing Colloquium.
Mori, M. (1970/2005). The Uncanny Valley. In K. F.
MacDormand & T. Minato (Trans.) . Energy , 7 (4), 33-35.
Murphy, D., & Pitt, I. (2001). Spatial sound enhancing
virtual storytelling. In Proceedings of the International
Conference ICVS, Virtual Storytelling Using Virtual
Reality Technologies for Storytelling (pp. 20-29) Berlin:
Springer.
Moss, W., Yeh, H. (2010) Automatic sound synthesis
from fluid simulation. ACM Trans. On Graphics (SIG-
GRAPH 2010).
Mozart, W. A. (1787). Musikalisches Würfelspiel: An-
leitung so viel Walzer oder Schleifer mit zwei Würfeln
zu componieren ohne musikalisch zu seyn noch von der
Composition etwas zu verstehen . Köchel Catalog of Mo-
zart's Work KV1 Appendix 294d or KV6 516f.
Murphy, D., & Rumsey, F. (2001). A scalable spatial
sound rendering system. In Proceedings of the 110th
AES Convention .
Murray, J. (1997). Hamlet on the holodeck: The future
of narrative in cyberspace . Cambridge, MA: MIT Press.
Mr. Do! (1983). CBS Electronics.
Muzak Corporation. (n.d.). Why Muzak . Retrieved Octo-
ber 5, 2009, from http://music.muzak.com/why_muzak.
Mullan, E. (2011). Physical modelling for sound synthesis
. In Grimshaw, M. (Ed.), Game sound technology and
player interaction: Concepts and developments . Hershey,
PA: IGI Global.
Myst. (1993). Brøderbund.
Nacke, L. E., Grimshaw, M. N., & Lindley, C. A. (2010).
More than a feeling: Measurement of sonic user experi-
ence and psychophysiology in a first-person shooter. In-
teracting with Computers , 22 (5), 336-343. doi:10.1016/j.
intcom.2010.04.005
Mullan, E. (2009). Driving sound synthesis from a phys-
ics engine. In Charlotte Kobert (Ed.), Proceedings of the
IEEE Games Innovation Conference 2009 (pp.256-264).
New York: IEEE.
Murch, W. (1995). Sound design: The dancing shadow .
In Boorman, J., Luddy, T., Thomson, D., & Donohue, W.
(Eds.), Projections 4: Film-makers on film-making (pp.
237-251). London: Faber and Faber.
Nacke, L., & Grimshaw, M. (2011). Player-game inter-
action through affective sound . In Grimshaw, M. (Ed.),
Game sound technology and player interaction: Concepts
and developments . Hershey, PA: IGI Global.
Murch, W. (1998). Dense clarity - Clear density . Re-
trieved March 10, 2009, from http://www.ps1.org/cut/
volume/murch.html
Nacke, L. E. (2009). Affective ludology: Scientific mea-
surement of user experience in interactive entertainment.
Unpublished doctoral dissertation. Blekinge Institute of
Technology, Karlskrona, Sweden. Retrieved January 1,
2010, from http://affectiveludology.acagamic.com.
Murphy, D. (1999). A review of spatial sound in the Java
3D API specification . Institute of Sound Recording,
University of Surrey.
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