How do interactions among motor structures contribute to the selection and execution of coordinated eye, head and hand movements? The present program addresses this question with a series of 5 inter-related projects: Project 1, Brainstem-Cerebellar Interactions in Gaze Control (Freedman, PI), asks how the rostral and caudal regions of the fastigial nucleus interact to coordinate eye and head movements in a continuum of possible combinations during targeted gaze shifts. Project 2, Spatial Interaction of Otolith Mediated Collic Reflexes (Gdowski, PI) asks how interactions between the vestibular nuclei and cervical motoneuron pools stabilize the head during linear whole-body translation. Project 3, Interactions in the Corticostriatal Network (Lee, PI), asks how neural interactions between the prefrontal cortex and the striatum incorporate choice and reward history to select the next movement from discrete alternatives. Project 4, Basal Ganglia - Cortical Interactions in Motor Control (Mink, PI) asks how interactions of the globus pallidus, pars interna, with the primary motor cortex and the supplementary motor area, suppress posture and permit movement, or suppress a prepotent movement when an alternative choice is correct. Project 5, Premotor Interactions in Motoric Choices (Schieber, PI), asks how interactions between the head and arm representations of the ventral premotor cortex contribute to discrete choices of which direction to look, which hand to use, and which target to take. Rather than taking the traditional approach of comparing the function of structures studied one at a time, the present program will improve understanding of how seamlessly coordinated motor behavior, influenced by choices made in various behavioral contexts, emerges from the neural interactions among multiple motor structures. Such an improved understanding of the motor system can lead to improved rehabilitative treatment, and improved functional recovery after nervous system injury from diseases such as stroke and head trauma.

Agency
National Institute of Health (NIH)
Institute
National Institute of Neurological Disorders and Stroke (NINDS)
Type
Research Program Projects (P01)
Project #
5P01NS048328-04
Application #
7418266
Study Section
Special Emphasis Panel (ZNS1-SRB-A (10))
Program Officer
Chen, Daofen
Project Start
2005-05-15
Project End
2010-04-30
Budget Start
2008-05-01
Budget End
2009-04-30
Support Year
4
Fiscal Year
2008
Total Cost
$1,217,525
Indirect Cost
Name
University of Rochester
Department
Neurosciences
Type
Schools of Dentistry
DUNS #
041294109
City
Rochester
State
NY
Country
United States
Zip Code
14627
Cai, Xinying; Kim, Soyoun; Lee, Daeyeol (2011) Heterogeneous coding of temporally discounted values in the dorsal and ventral striatum during intertemporal choice. Neuron 69:170-82
Curtis, Clayton E; Lee, Daeyeol (2010) Beyond working memory: the role of persistent activity in decision making. Trends Cogn Sci 14:216-22
Dancause, Numa; Schieber, Marc H (2010) The impact of head direction on lateralized choices of target and hand. Exp Brain Res 201:821-35
Brown, E T; Luan, H; Gdowski, M J et al. (2009) Head movements produced during linear translations in unexpected directions. Conf Proc IEEE Eng Med Biol Soc 2009:7261-4
Hwang, Jaewon; Kim, Soyoun; Lee, Daeyeol (2009) Temporal discounting and inter-temporal choice in rhesus monkeys. Front Behav Neurosci 3:9
Kim, Soyoun; Hwang, Jaewon; Lee, Daeyeol (2008) Prefrontal coding of temporally discounted values during intertemporal choice. Neuron 59:161-72
Lee, Daeyeol; Rushworth, Matthew F S; Walton, Mark E et al. (2007) Functional specialization of the primate frontal cortex during decision making. J Neurosci 27:8170-3
Lee, Daeyeol; Seo, Hyojung (2007) Mechanisms of reinforcement learning and decision making in the primate dorsolateral prefrontal cortex. Ann N Y Acad Sci 1104:108-22
Lee, Daeyeol; Schieber, Marc H (2006) Serial correlation in lateralized choices of hand and target. Exp Brain Res 174:499-509
Gardinier, Jennifer; Franco, Vanessa; Schieber, Marc H (2006) Interactions between lateralized choices of hand and target. Exp Brain Res 170:149-59