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Spencer, Rebecca M. C., Zelaznik, Howard N., Diedrichsen, Jörn, and Ivry, Richard B. (2003). Disrupted Timing of Discontinuous But Not Continuous Movements by Cerebellar
Lesions. University of California, Berkeley. Science, 300(5624), 1437-1442.

Paul M. Stemmer, Jr. (1997). Improving Student Motor Integration by Use of an Interactive Metronome. Madonna University, Livonia, Michigan.

Thedore R. Zanto, Edward W. Large, Armi Fuchus, and J. A. Scott Kelso. (2005). Gamma-Band Responses to Perturbed Auditory Sequences: Evidence for Synchronization of
Perceptual Processes. Florida Atlantic University, Music Perception, 22(3), 531–547.

Sara L. Bengtsson (1), Fredrik Ullen (2), H. Henrik Ehrsson (1), Toshihiro Hashimoto (3), Tomonori Kito (3), Eiichi Naito (3), Hans Forssberg (2), and Norihiro Sadato (4). (2009). Listening to rhythms activates motor and premotor cortices. (1) University College London, (2) Karolinska Institutet (3) Kyoto University, Kyoto, (4) National Institute for Physiological Sciences, Okazaki, Japan. Coretx,45, 62-71.

Richard Ivry (1), Jörn Diedrichsen (1), Rebecca Spencer (1), Eliot Hazeltine (2), and Andras
Semjen (3). (2004). A Cognitive Neuroscience Perspetive on Bimanual Coordination and Interference. (1) University of California, Berkeley, (2) Nasa Ames, (3) CNRS Marseille. Chapter 9, 1-30.

K.J. Jantzen (1), O. Oullier (3), M. Marshall (1), F.L. Steinberg (1, 2), J.A.S. Kelso (1). (2007). A parametric fMRI investigation of context effects in sensorimotor timing and coordination. (1) Florida Atlantic University, (2) University MRI & Diagnostic Imaging Centers, (3) Universite de Provence-CNRS, France. Neuropsychologia, 45, 673–684.

Jacques Larue. (2005). Initial Learning of Timing in Combined Serial Movements and a No-Movement Situation. Université de Basse-Normandie.Music Perception, 22(3), 509 –530.

P. A .Lewsi (1, 2), A. M. Wing (2), P. A. Pope (2) ,P. Praamstra (2), and R. C. Miall (1). (2002). Brain activity correlates differentially with increasing temporal complexity of rhythms during initialisation, synchronisation, and continuation phases of paced fingertapping. (1) University Laboratory of Physiology,Oxford, (2) University of Birmingham, Birmingham, UK. Neuropsychologia, 1779 1–12.

R. C. Miall and G. Z. Reckess. (2002). The Cerebellum and the Timing of Coordinated Eye and Hand Tracking. University Laboratory of Physiology, Parks Road, Oxford. Brain and Cognition 48, 212 – 226.

Daniel B. Willingham. (1999). The Neural Basis of Motor-Skill Learning. University of Virginia. Directions in Psychological Science, 8(6), 178-182.

Isabelle Peretz and Robert J. Zatorre. (2005). Brain Organization for Music Processing. University of Montreal, Montreal, McGill University. Annual Revue Psychology, 56, 89–114.

Russell A. Poldrack (1, 3, 4), Fred W. Sabb (4, 5) Karin Foerde (1), Sabrina M. Tom (1), Robert F. Asarnow (2), Susan Y. Bookheimer (2, 3, 4, 5) and Barbara J. Knowlton1 (3, 4). (2005). The Neural Correlates of Motor Skill Automaticity. Departments of (1) Psychology and (2) Psychiatry, (3) Brain Research Institute, (4) Interdepartmental Neuroscience Program, and (5) Brain Mapping Center, University of California, Los Angeles. The Journal of Neuroscience25(22), 5356 –5364.

Arne Ridderikhoff , C. (Lieke) E. Peper, Peter J. Beek. (2008).Attentional loads associated with interlimb interactions underlying rhythmic bimanual coordination. VU University Amsterdam, The Netherlands. Cognition 109, 372–388.

Gregor Schoner. (2002). Timing, Clocks, and Dynamical Systems. Centre de Recherche en Neurosciences Cognitives. Brain and Cognition 48, 31 – 51.

Hans-Henning Schulze and Dirk Vorberg. (2002). Linear Phase Correction Models for Synchronization: Parameter Identification and Estimation of Parameters. Philipps-Universitat, Marburg, Technische Universitat Braunschweig. Brain and Cognition 48, 80 – 97.

Michael H. Thaut (2), Klaus M. Stephan (1, 2), Gilbert Wunderlich (1, 4), Wilfried Schicks (3), Lutz Tellmann (4), Hans Herzog (4), Gerald C. McIntosh (2), Ruediger J. Seitz (1), and Volker Homberg (3). (2009). Distinct cortico-cerebellar activations in rhythmic auditory motor synchronization. (1) Department of Neurology, Heinrich-Heine-University Du¨ sseldorf, Du¨ sseldorf, Germany, (2) Colorado State University, (3) Neurological Therapy Center, Heinrich-Heine-University Dusseldorf, (4) Institute of Medicine. Coretx 45, 44-53.

Kjerstin Torre and Didier Delignières. (2008). Distinct ways of timing movements in bimanual coordination tasks: Contribution of serial correlation analysis and implications for modeling. University Montpellier. Acta Psychologica 129 (2008) 284–296.

Laurel J. Trainor (1, 2), Xiaoqing Gao (1), Jing-jiang Lei (1), Karen Lehtovaara (1) and Laurence R. Harris (3). (2009). The primal role of the vestibular system in determining musical rhythm. (1)
McMaster University, (2) Baycrest Hospital, Toronto, Ontario, (3) York University. Coretx 45, 35-43.

Fredrik Ullén. (2007). Independent neural control of rhythmic sequences — behavioral and fMRI evidence. Karolinska Institutet. Physiology & Behavior 92, 193 – 198.

Hilde Van Waelvelde (1, 2), Willy De Weerdt (1), Paul De Cock (3), Luc Janssens (4), Hilde Feys (1), Bouwien C.M. Smits Engelsman (1, 5, 6). (2006). Parameterization of movement execution in children with developmental coordination disorder. (1) Faculty of Kinesiology and Rehabilitation Sciences, K.U. Leuven, (2) Arteveldehogeschool, Belgium, (3) Center for Developmental Disabilities, Faculty of Medicine, K.U. Leuven, (4) Leuven Institute of Technology, (5) University for Professionals, Breda, The Netherlands, (6) Radboud University of Nijmegen, The Netherlands.
Brain and Cognition 60, 20–31.

P.H. Wilson and D. Larkin. (2008). New and emerging approaches to understanding developmental coordination disorder. RMIT University, University of Western Australia. Human Movement Science 27, 171–176.

Howard N.Zelaznik (1), Rebecca M.C.Spencer (2), Richard B.Ivry, (2) Alex Baria (1), Melissa Bloom (1), Lisa Dolansky (1), Shannon Justice (1), Kristen Patterson (1), and Emily Whetter (1). (2005). Timing Variability in Circle Drawing and Tapping:Probing the Relationship Between Event and Emergent Timing. (1) Purdue University, (2), University of California at Berkeley. Journal of Motor Behavior, 37(5) 395–403.

M.H. Thaut, A.K. Leins, R.R. Rice, H. Argstatter, G.P. Kenyon, G.C. McIntosh, H.V. Bolay and M. Fetter. (2007). Patients Early Poststroke: A Single-Blind, Randomized Trial Rhythmic Auditory Stimulation Improves Gait More Than NDT/Bobath Training in Near-Ambulatory. Colorado State University, Fort Collins. Neurorehabilitation and Neural Repair 21(5), 455-459.

Eunmi Emily Kwak, MME, MT-BC. (2007). Effect of Rhythmic Auditory Stimulation on Gait Performance in Children with Spastic Cerebral Palsy. Michigan State University. Journal of Music Therapy, XLIV (3), 198-216.

Jeffrey M. Hausdorff (1, 2, 3), Justine Lowenthal (1, 2), Talia Herman (1), Leor Gruendlinger (1), Chava Peretzand (1, 2), and Nir Giladi (1, 2, 4). (2007). Rhythmic auditory stimulation modulates gait variability in Parkinson’s disease. (1) Laboratory for Gait and Neurodynamics, Movement Disorders Unit and Parkinson Center, Department of Neurology, Israel (2) Department of Physical Therapy, Sackler Faculty of Medicine, Tel Aviv University, Israel, (3) Harvard Medical School, (4) Department of Neurology, Sackler Faculty of Medicine, Tel Aviv University, Israel. . European Journal of Neuroscience, 26, 2369–2375.

M.H. Thaut , G.C. McIntosh and R.R. Rice. (1997). Rhythmic facilitation of gait training in hemiparetic stroke rehabilitation. Colorado State University, Poudre Valley Hospital, Fort Collins, CO. Journal of Neurological Sciences 151 207 – 212.

Gary P. Kenyon and Michael H. Thaut. (2000). A measure of kinematic limb instability modulation by rhythmic auditory stimulation. Colorado State University. Journal of Biomechanics 33, 1319-1323.

M. H. Thaut (1), G. C. McIntosh (2), R. R. Rice (2), R. A. Miller (1), J. Rathbun (1), and J. M. Brault (1). (1996). Rhythmic Auditory Stimulation in Gait Training for Parkinson’s Disease Patients. (1) Colorado State University, (2) Poudre Valley Hospital, Fort Collins, CO. Movement Dieordrrs, 11(2), 193-200.

 
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Copyright © 1993 - 2008 Interactive Metronome - All Rights Reserved. United States Patent #5,529,498 & #5,743,744. Additional patents are pending worldwide on the Interactive Metronome, covering all its concepts, designs, related triggers and methods of use. International copyrights cover all IM related computer programs and other related materials. Interactive Metronome is a registered Trademark.