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Functional Connectivity during Elbow Movements: Comparison between Motor and Non-motor Task

机译:肘部运动期间的功能连接:电机和非运动任务之间的比较

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In order to implement cognitive motor brain machine interfaces, the systems must be capable of identifying when a subject wishes to perform a given task. Nowadays, researches normally use parameters as event related synchronism (ERS) and event related desynchronism (ERD) to provide a kind of switch to turn on or off those systems. Directed transfer function (DTF) technique can provide the behaviour of the functional connectivity between brain regions. Some researchers have shown that the change of such parameters may be used to identify when a subject is performing different tasks. In this paper we propose the use of the DTF to identify the changes of functional connectivity between resting state and movement perform for elbow movements (flexion and extension), while a subject is interacting with a robot arm. Results showed that it is possible to identify when subjects are performing motor task and non-motor task by the comparison of their functional connectivity. Another finding is that was possible to distinguish the two elbow movements (flexion and extension) when comparing their functional connectivity. These findings could be used for a better control of a brain machine interface given a subject more freedom on task perform.
机译:为了实现认知电机脑机接口,系统必须能够识别主题何时希望执行给定任务。如今,研究通常使用参数作为事件相关的同步(ERS)和事件相关的desynchronism(ERD),以提供一种开关打开或关闭这些系统。定向传递函数(DTF)技术可以提供脑区之间的功能连接的行为。一些研究人员已经表明,这种参数的变化可以用于识别当受试者执行不同的任务时。在本文中,我们提出了使用DTF来识别用于肘部运动(屈曲和扩展)的休息状态和运动之间的功能连通性的变化,而受试者与机器人臂相互作用。结果表明,当受试者通过比较它们的功能连接时,可以识别受试者执行电机任务和非电机任务。另一个发现是可以在比较它们的功能连接时区分两个弯头运动(屈曲和扩展)。这些发现可以用于更好地控制脑机界面,给出了在任务执行的主题上更自由。

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