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

Нейротехнологии для когнитивного улучшения человека: современное состояние и перспективы
Riccardo Poli, Caterina Cinel, Davide Valeriani
2019-01-31

attention monitoringbrain observation technologiesbrain stimulation technologiescommunication augmentationethical issueshuman cognitive augmentationinvasivenessmemory enhancementneurotechnologiesportabilitysituation awarenessspatio-temporal resolutiontechnology forecastinguser training requirements
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.
1
Assessed potential population fractions who might benefit and the user training demands required for different neurotechnologies.
2
Identified ethical issues as key factors that may accelerate or hinder adoption, potentially causing inferior-ethical technologies to outcompete superior but ethically fraught ones.
3
Provided a two-decade forecast of likely developments and recommendations for future research and exploitation based on trends and ethical considerations.
4
Reviewed existing and emerging augmentation applications across communication, cognitive enhancement, memory, attention, situation awareness, and complex problem solving.
5
Surveyed neuroscience technologies for observing and influencing brain activity as necessary ingredients for cognitive augmentation.
6
Technology characteristics (spatio-temporal resolution, invasiveness, portability, energy, cost) critically shape their current and future roles in augmentation.

Neurotechnologies for human cognitive augmentation

Current capabilities, comparative characteristics (spatio-temporal resolution, invasiveness, portability, energy requirements, cost), application areas (communication, cognitive enhancement, memory, attention monitoring/enhancement, situation awareness, complex problem solving), population reach, user training demands, ethical issues, and near- to mid-term future developments and prospects of these neurotechnologies

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2019-01-31
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Riccardo Poli
Caterina Cinel
Davide Valeriani
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