首页> 外文会议>9th biennial conference on engineering systems design and analysis 2008 >Adaptive Motor Control During Experiments with Brain Machine Interfaces
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Adaptive Motor Control During Experiments with Brain Machine Interfaces

机译:使用脑机接口进行实验期间的自适应电机控制

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Recent experiments with Brain Machine Interfaces indicate that the extent of neural modulations increases abruptly upon starting to operate the interface. In contrast, neural modulations due to the trajectory profile remain relatively unchanged. Furthermore, the enhanced modulations subside with further training, mirroring the trend in task performance, which degraded upon starting to operate the interface and improved gradually with training. Here we investigate the hypothesis that the enhanced modulations reflect internal representation of trajectory errors, which results in corrective commands in the short term and adaptive modifications of internal models in the long term. A simplified uni-dimensional model is analyzed to demonstrate the observed transient enhancement in neural modulations during the operation of Brain machine Interfaces. Identifying the source of the transient enhancement in neural modulation would provide insight into adaptive motor control and facilitate the improvement of future Brain Machine Interfaces.
机译:最近使用Brain Machine Interfaces进行的实验表明,神经调制的程度在开始操作该接口时突然增加。相反,由于轨迹轮廓而引起的神经调制保持相对不变。此外,增强的调制随着进一步的培训而减弱,从而反映了任务性能的趋势,该趋势在开始操作界面时逐渐降低,并随着培训而逐渐改善。在这里,我们研究了以下假设:增强的调制反映了轨迹误差的内部表示,这会在短期内导致纠正命令,并在长期内导致内部模型的自适应修改。分析了简化的一维模型,以证明在脑机接口操作期间观察到的神经调制的瞬时增强。识别神经调制中瞬态增强的来源将提供对自适应运动控制的洞察力,并有助于改进未来的脑机接口。

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