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Review
. 2019 Jan 31:13:13.
doi: 10.3389/fnhum.2019.00013. eCollection 2019.

Neurotechnologies for Human Cognitive Augmentation: Current State of the Art and Future Prospects

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Review

Neurotechnologies for Human Cognitive Augmentation: Current State of the Art and Future Prospects

Caterina Cinel et al. Front Hum Neurosci. .

Abstract

Recent advances in neuroscience have paved the way to innovative applications that cognitively augment and enhance humans in a variety of contexts. This paper aims at providing a snapshot of the current state of the art and a motivated forecast of the most likely developments in the next two decades. Firstly, we survey the main neuroscience technologies for both observing and influencing brain activity, which are necessary ingredients for human cognitive augmentation. We also compare and contrast such technologies, as their individual characteristics (e.g., spatio-temporal resolution, invasiveness, portability, energy requirements, and cost) influence their current and future role in human cognitive augmentation. Secondly, we chart the state of the art on neurotechnologies for human cognitive augmentation, keeping an eye both on the applications that already exist and those that are emerging or are likely to emerge in the next two decades. Particularly, we consider applications in the areas of communication, cognitive enhancement, memory, attention monitoring/enhancement, situation awareness and complex problem solving, and we look at what fraction of the population might benefit from such technologies and at the demands they impose in terms of user training. Thirdly, we briefly review the ethical issues associated with current neuroscience technologies. These are important because they may differentially influence both present and future research on (and adoption of) neurotechnologies for human cognitive augmentation: an inferior technology with no significant ethical issues may thrive while a superior technology causing widespread ethical concerns may end up being outlawed. Finally, based on the lessons learned in our analysis, using past trends and considering other related forecasts, we attempt to forecast the most likely future developments of neuroscience technology for human cognitive augmentation and provide informed recommendations for promising future research and exploitation avenues.

Keywords: brain-computer interfaces; cognitive augmentation; decision-making; neuroergonomics; neuroscience.

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Figures

Figure 1
Figure 1
Taxonomy of neuroscience technologies for observing and influencing brain activity based on temporal resolution, spatial resolution, invasiveness (circle vs. square), and portability (color).
Figure 2
Figure 2
Roadmap of the development of neuroscience technologies for different human augmentation applications. IRT, Invasive Recording Technology; IST, Invasive Stimulation Technology.

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References

    1. Abbass H. A., Tang J., Amin R., Ellejmi M., Kirby S. (2014). Augmented cognition using real-time EEG-based adaptive strategies for air traffic control. Proc. Hum. Factors Ergon. Soc. 2014, 230–234. 10.1177/1541931214581048 - DOI
    1. Abrams R. (2002). Electroconvulsive Therapy. New York, NY: Oxford University Press.
    1. Agar N. (2008). Liberal Eugenics: In Defence of Human Enhancement. Oxford, UK: John Wiley & Sons.
    1. Ahn M., Ahn S., Hong J. H., Cho H., Kim K., Kim B. S., et al. . (2013). Gamma band activity associated with BCI performance: simultaneous MEG/EEG study. Front. Hum. Neurosci. 7:848. 10.3389/fnhum.2013.00848 - DOI - PMC - PubMed
    1. Allison B. Z., Brunner C., Altstätter C., Wagner I. C., Grissmann S., Neuper C. (2012a). A hybrid ERD/SSVEP BCI for continuous simultaneous two dimensional cursor control. J. Neurosci. Methods 209, 299–307. 10.1016/j.jneumeth.2012.06.022 - DOI - PubMed