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神经反馈对双向脑机接口中传入通路的即时时空调制。

Neural feedback for instantaneous spatiotemporal modulation of afferent pathways in bi-directional brain-machine interfaces.

机构信息

Department of Electrical and Computer Engineering, Michigan State University, East Lansing, MI 48823, USA.

出版信息

IEEE Trans Neural Syst Rehabil Eng. 2011 Oct;19(5):521-33. doi: 10.1109/TNSRE.2011.2162003. Epub 2011 Aug 18.

Abstract

In bi-directional brain-machine interfaces (BMIs), precisely controlling the delivery of microstimulation, both in space and in time, is critical to continuously modulate the neural activity patterns that carry information about the state of the brain-actuated device to sensory areas in the brain. In this paper, we investigate the use of neural feedback to control the spatiotemporal firing patterns of neural ensembles in a model of the thalamocortical pathway. Control of pyramidal (PY) cells in the primary somatosensory cortex (S1) is achieved based on microstimulation of thalamic relay cells through multiple-input multiple-output (MIMO) feedback controllers. This closed loop feedback control mechanism is achieved by simultaneously varying the stimulation parameters across multiple stimulation electrodes in the thalamic circuit based on continuous monitoring of the difference between reference patterns and the evoked responses of the cortical PY cells. We demonstrate that it is feasible to achieve a desired level of performance by controlling the firing activity pattern of a few "key" neural elements in the network. Our results suggest that neural feedback could be an effective method to facilitate the delivery of information to the cortex to substitute lost sensory inputs in cortically controlled BMIs.

摘要

在双向脑机接口(BMI)中,精确控制微刺激的时空传递对于持续调节携带有关大脑驱动设备状态信息的神经活动模式至关重要,这些信息传递到大脑中的感觉区域。在本文中,我们研究了使用神经反馈来控制丘脑皮质通路模型中神经集合的时空发射模式。通过多输入多输出(MIMO)反馈控制器,基于对丘脑中继细胞的微刺激,实现对初级体感皮层(S1)中的锥体(PY)细胞的控制。这种闭环反馈控制机制是通过基于参考模式和皮质 PY 细胞的诱发反应之间的差异的连续监测,在丘脑回路中的多个刺激电极上同时改变刺激参数来实现的。我们证明,通过控制网络中少数“关键”神经元件的发射活动模式,可以实现所需的性能水平。我们的结果表明,神经反馈可能是一种有效的方法,有助于将信息传递到皮层,以替代皮质控制的 BMI 中丢失的感觉输入。

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