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FRONTAL LOBE AND CEREBRAL CONTROL OF ADAPTIVE SPATIAL-MOTOR BEHAVIOR

FRONTAL LOBE AND CEREBRAL CONTROL OF ADAPTIVE SPATIAL-MOTOR BEHAVIOR
自适应空间运动行为的额叶和大脑控制
批准号:
2578697
负责人:
Donald J. Crammond
金额:
$0.0万
依托单位国家:
美国
项目类别:
财政年份:
--
资助国家:
美国
项目状态:
未结题
起止时间:
至

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中文摘要
翻译
本项目研究认知加工的神经机制
英文摘要
This project studies neural mechanisms underlying processing of cognitive information and the learning of motor adaptations associated with spatial-motor behavior. Single unit activity is measured in monkeys trained to perform multidirectional reaching movements during instructed- delay tasks. The frontal lobe is an important structure for the generation of (a) reaching behavior in extrapersonal space, (b) proper movement sequencing, and (c) the utilization of requisite information from memory and sensory systems for guided movements. This is a behavioral neurophysiology study of three major divisions of the frontal lobe of primates: the primary motor cortex (M1), dorsal premotor cortex (Pmd), and supplementary motor area (SMA). Two paradigms involving the serial presentation of spatial information are used to investigate each cortical area and the processing of requisite visual-spatial information for reaching. In one a previously learned movement sequence is prepared and executed by a monkey. This task will determine which specific attributes of spatial reaching are encoded at the cortical level and whether movement sequences are represented in neural signals as transformation between spatial representations off component movement segments, or, as representations of the relationship between the first and second movement segments. In the second task, a robot arm is used to rapidly change the mechanical environment of reaching movements and accordingly modify the sensorimotor experience of producing different reaching movements with the same starting and final arm positions. The robot arm will rapidly produce unfamiliar mechanical environments and simulate collisions between the arm and "virtual" objects at specific locations along the movement trajectory. This design will allow the neural correlates of learned adaption of spatial-motor behavior to be studied.
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FRONTAL LOBE AND CEREBRAL CONTROL OF ADAPTIVE SPATIAL/MOTOR BEHAVIOR
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