LEARNING AND ADAPTATION OF MULTIJOINT ARM MOVEMENTS
LEARNING AND ADAPTATION OF MULTIJOINT ARM MOVEMENTS
批准号:
2750958
负责人:
FERDINANDO Alessandro MUSSA-IVALDI
金额:
$13.7万
依托单位国家:
美国
项目类别:
财政年份:
1996
资助国家:
美国
项目状态:
已结题
起止时间:
1996-09-01 至 2000-07-31
关键词:
adolescence (12-20) arm behavioral /social science research tag biomechanics clinical research environmental adaptation hand human subject joints learning limb movement neural information processing posture rehabilitation sensorimotor system statistics /biometry visual feedback young adult human (21-34)
中文摘要
描述(改编自申请人的摘要):本研究的目的是
在理解(A)新的收购之间的关系
协调运动和(B)适应新的机械
环境。这两个过程都需要行为的长期变化
由感觉运动经验引起的。然而,在学习新知识的同时,
动作可能需要高强度的训练和集中的注意力,运动
适应可以自发发生,不需要明确的指令。
这项提案的中心目标是创建一个统一的实验和
运动学习和适应分析的理论框架,
基于这样的工作假设,即这两种努力都可以通过
中枢神经系统结合了几个简单模块的操作
控制力。因此,调查分为三组
实验:
(1)在第一种方法中,将使用机械摄动来估计
受试者手保持静止时产生的力场
不同的地点。这些字段将被视为
最基本的控制模块。
(2)第二个目的是将更复杂的控制字段表示为
以上模块的组合。机械扰动将被用来
估计受试者在执行过程中产生的力场(A)
手的不同轨迹,以及(B)在
适应复杂的机械环境
伺服控制机械手。
(3)研究对象如何学习复杂的手部运动轨迹
在多大程度上可以通过以下方式获得或促进轨迹学习
适应专门设计的机械环境。一种新的设计
这些环境将通过以下共同代表而成为可能
学习和适应是可衡量的力量领域。
拟议的实验对临床问题具有重要意义:如果
马达系统具有自动过程,以适应
环境力学,那么这些实验将决定如何
利用适应性过程促进马达的恢复
由于中风或其他中枢神经系统损伤而失去的技能。
英文摘要
DESCRIPTION (Adapted from the Applicant's Abstract): This research is aimed
at understanding the relationship between (a) the acquisition of new
coordinated movements and (b) the adaptation to novel mechanical
environments. Both processes entail long-lasting changes in behavior
induced by sensorimotor experience. However, while learning of new
movements may require intense training and well-focused attention, motor
adaptation may occur spontaneously, without need for explicit instructions.
The central goal of this proposal is to create a unified experimental and
theoretical framework for the analysis of motor learning and adaptation,
based on the working hypothesis that both endeavors may be obtained by the
central nervous system combining the operation of a few simple modules of
control. Accordingly, the investigations are divided in three sets of
experiments:
(1) In the first, mechanical perturbations will be used to estimate the
force fields generated by subjects maintaining their hand at rest in
different locations. These fields will be considered as the expression of
the most elementary modules of control.
(2) The second is aimed at representing more complex control fields as a
combination of the above modules. Mechanical perturbations will be used to
estimate the force fields generated by the subjects (a) during the execution
of different trajectories of the hand and (b) during the process of
adaptation to complex mechanical environments generated by a
servo-controlled manipulandum.
(3) The third will investigate how subjects learn complex hand trajectories
and to what extent trajectory learning may be obtained or facilitated by
adapting to specifically designed mechanical environments. The design of
these environments will be made possible by the common representation of
learning and adaptation as measurable fields of forces.
The proposed experiments have significance to clinical problems: If the
motor system has automatic processes for adapting to changes in the
mechanics of the environment, then these experiments will determine how to
take advantage of adaptive processes for facilitating the recovery of motor
skills that have been lost due to stroke or other CNS injuries.
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