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Using Noninvasive Brain Stimulation to Accelerate Learning and Enhance Human Performance

机译:使用非侵入性脑刺激来加速学习并增强人类绩效

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Objective: The authors evaluate the effectiveness of noninvasive brain stimulation, in particular, transcranial direct current stimulation (tDCS), for accelerating learning and enhancing human performance on complex tasks. Background: Developing expertise in complex tasks typically requires extended training and practice. Neuroergonomics research has suggested new methods that can accelerate learning and boost human performance. TDCS is one such method. It involves the application of a weak DC current to the scalp and has the potential to modulate brain networks underlying the performance of a perceptual, cognitive, or motor task. Method: Examples of tDCS studies of declarative and procedural learning are discussed. This mini-review focuses on studies employing complex simulations representative of surveillance and security operations, intelligence analysis, and procedural learning in complex monitoring. Results: The evidence supports the view that tDCS can accelerate learning and enhance performance in a range of complex cognitive tasks. Initial findings also suggest that such benefits can be retained over time, but additional research is needed on training schedules and transfer of training. Conclusion: Noninvasive brain stimulation can accelerate skill acquisition in complex tasks and may provide an alternative or addition to other training methods.
机译:目的:作者评估无创性脑刺激,特别是经颅直流电刺激(tDCS)的有效性,以加速学习并增强人类在复杂任务上的表现。背景:培养复杂任务的专业知识通常需要扩展培训和实践。神经人体工程学研究提出了可以加速学习并提高人类绩效的新方法。 TDCS就是这样一种方法。它涉及在头皮上施加微弱的直流电流,并有可能调节感知,认知或运动任务执行基础的大脑网络。方法:讨论了说明性和程序性学习的tDCS研究实例。这份小型回顾着重于采用复杂模拟的研究,这些模拟代表监视和安全操作,情报分析以及复杂监视中的过程学习。结果:证据支持以下观点:tDCS可以在一系列复杂的认知任务中加速学习并提高绩效。最初的发现还表明,随着时间的流逝,这些好处可以保留,但是还需要对培训时间表和培训转移进行更多研究。结论:无创性脑刺激可以加速复杂任务中的技能获取,并且可以提供其他培训方法的替代或补充。

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