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Cerebral Cortex (New York, N.Y. : 1991)|March 4, 2009
Cortical and subcortical mechanisms for precisely controlled force generation and force relaxationMatthew B Spraker, Daniel M Corcos, David E VaillancourtJournal of Neurophysiology|June 15, 2007
Role of individual basal ganglia nuclei in force amplitude generationMatthew B Spraker, Hong Yu, Daniel M Corcos, et al.Human Brain Mapping|March 13, 2010
Basal ganglia hypoactivity during grip force in drug naïve Parkinson's diseaseMatthew B Spraker, Janey Prodoehl, Daniel M Corcos, et al.Neuroscience and Biobehavioral Reviews|May 12, 2009
Basal ganglia mechanisms underlying precision grip force controlJaney Prodoehl, Daniel M Corcos, David E VaillancourtJournal of Neurophysiology|July 4, 2003
Neural basis for the processes that underlie visually guided and internally guided force control in humansDavid E Vaillancourt, Keith R Thulborn, Daniel M CorcosJournal of Neurophysiology|November 4, 2005
Intermittent visuomotor processing in the human cerebellum, parietal cortex, and premotor cortexDavid E Vaillancourt, Mary A Mayka, Daniel M CorcosJournal of Neurophysiology|February 18, 2005
Effects of aging on the regularity of physiological tremorMolly M Sturman, David E Vaillancourt, Daniel M CorcosNeuroimage|October 13, 2010
Spatiotemporal tuning of brain activity and force performanceStephen A Coombes, Daniel M Corcos, David E VaillancourtNeuroimage|January 16, 2007
Role of hyperactive cerebellum and motor cortex in Parkinson's diseaseHong Yu, Dagmar Sternad, Daniel M Corcos, et al.Journal of Neurophysiology|February 26, 2010
Selective regions of the visuomotor system are related to gain-induced changes in force errorStephen A Coombes, Daniel M Corcos, Lisa Sprute, et al.Pageof 32