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Paradigm Shift in Sensorimotor Control Research and Brain Machine Interface Control: The Influence of Context on Sensorimotor Representations

机译:感觉运动控制研究和脑机接口控制中的范式转移:上下文对感觉运动表示的影响

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摘要

Neural activity in the primary motor cortex (M1) is known to correlate with movement related variables including kinematics and dynamics. Our recent work, which we believe is part of a paradigm shift in sensorimotor research, has shown that in addition to these movement related variables, activity in M1 and the primary somatosensory cortex (S1) are also modulated by context, such as value, during both active movement and movement observation. Here we expand on the investigation of reward modulation in M1, showing that reward level changes the neural tuning function of M1 units to both kinematic as well as dynamic related variables. In addition, we show that this reward-modulated activity is present during brain machine interface (BMI) control. We suggest that by taking into account these context dependencies of M1 modulation, we can produce more robust BMIs. Toward this goal, we demonstrate that we can classify reward expectation from M1 on a movement-by-movement basis under BMI control and use this to gate multiple linear BMI decoders toward improved offline performance. These findings demonstrate that it is possible and meaningful to design a more accurate BMI decoder that takes reward and context into consideration. Our next step in this development will be to incorporate this gating system, or a continuous variant of it, into online BMI performance.
机译:已知初级运动皮层(M1)中的神经活动与运动相关的变量(包括运动学和动力学)相关。我们最近的工作(我们认为是感觉运动研究范式转变的一部分)表明,除了这些与运动相关的变量外,M1和主要体感皮层(S1)的活动还受上下文(例如值)的调节。主动运动和运动观察。在这里,我们扩展了对M1中的奖励调制的研究,表明奖励级别将M1单元的神经调节功能更改为运动学和动态相关变量。此外,我们表明这种奖励调节活动存在于脑机接口(BMI)控制期间。我们建议,考虑到M1调制的这些上下文相关性,我们可以产生更健壮的BMI。朝着这个目标迈进,我们证明了我们可以在BMI控制下,基于逐个运动对M1的奖励期望进行分类,并使用它来选通多个线性BMI解码器以提高离线性能。这些发现表明,设计一种考虑奖励和上下文的更精确的BMI解码器是可能且有意义的。我们开发的下一步将是将该门控系统或其连续变体纳入在线BMI性能中。

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