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Multimodal Neural Interfaces for Augmenting Human Cognition

机译:用于增强人类认知的多模式神经界面

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Within the next decade multimodal neural interfaces (MNI's) could begin to transform society by expanding human cognitive abilities. Embodiments of such interfaces will include a combination of biometric and environmental sensors working in cooperation with noninvasive brain stimulation or neuromodulation devices to optimize human cognitive processes. These MNI's may, for example, monitor psychophysiological arousal using pupillometry and responsively stimulate noradrenergic activity in a manner to enhance sustained attention or vigilance. Other near-term applications may include MNI's that are designed to enable an individual to maintain a particular state of calm or flow state during stressful tasks by using algorithms to generate auricular vagal nerve stimulation waveforms based on real-time heart rate variability and electroen-cephalography data. Numerous other possibilities remain. The present paper provides a brief overview of several different types of biometric sensors and the neurophysiological systems they can monitor. This information is provided in context of their present limitations, as well as how neurophysiological sensors may be used in combination with noninvasive brain stimulation (NIBS) methods to augment human cognition and performance. Overall the paper attempts to provide a balanced and realistic examination of the issues remaining to be solved or addressed in order to reliably enhance human cognition. Efforts that combine high quality sensors for monitoring neurophysiological signatures of attention and psychophysiological markers of arousal with scientifically-grounded neurostimulation approaches in an integrated MNI solution will be necessary to achieve reliable and reproducible cognitive augmentation facilitated by future MNI's.
机译:在下十年内,多式联运神经界面(MNI)可以通过扩大人类认知能力来开始改变社会。这种界面的实施例将包括与非侵入性脑刺激或神经调节装置合作的生物识别和环境传感器的组合,以优化人类认知过程。例如,这些MNI可以使用瞳孔测量监测心理生理学唤醒,并以促进持续关注或警惕的方式响应刺激去甲肾上腺素能活性。其他近期应用可以包括MNI的旨在使个人能够通过使用算法基于实时心率变异性和电脑 - 头脑产生静脉迷住神经刺激波形来维持压力任务期间的特定状态的平静或流动状态状态数据。仍有许多其他可能性。本文简要概述了几种不同类型的生物识别传感器和它们可以监测的神经生理系统。该信息在其目前的限制的背景下提供,以及神经生理传感器如何与非侵入性脑刺激(NIBS)方法组合使用,以增加人类认知和性能。总的来说,纸张试图提供对待解决的问题或解决的问题的平衡和现实的检查,以便可靠地增强人类认知。结合了高品质的传感器用于监控的关注和兴奋的心理生理指标的神经生理特征具有科学依据的神经刺激努力于一体的综合解决方案MNI方法将有必要实现由未来MNI的方便可靠和可重复性的认知增强。

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