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Enhancement of human cognitive performance using transcranial magnetic stimulation (TMS)

机译:使用经颅磁刺激(TMS)增强人类认知能力

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摘要

Here we review the usefulness of transcranial magnetic stimulation (TMS) in modulating cortical networks in ways that might produce performance enhancements in healthy human subjects. To date over sixty studies have reported significant improvements in speed and accuracy in a variety of tasks involving perceptual, motor, and executive processing. Two basic categories of enhancement mechanisms are suggested by this literature: direct modulation of a cortical region or network that leads to more efficient processing, and addition-by-subtraction, which is disruption of processing which competes or distracts from task performance. Potential applications of TMS cognitive enhancement, including research into cortical function, rehabilitation therapy in neurological and psychiatric illness, and accelerated skill acquisition in healthy individuals are discussed, as are methods of optimizing the magnitude and duration of TMS-induced performance enhancement, such as improvement of targeting through further integration of brain imaging with TMS. One technique, combining multiple sessions of TMS with concurrent TMS/task performance to induce Hebbian-like learning, appears to be promising for prolonging enhancement effects. While further refinements in the application of TMS to cognitive enhancement can still be made, and questions remain regarding the mechanisms underlying the observed effects, this appears to be a fruitful area of investigation that may shed light on the basic mechanisms of cognitive function and their therapeutic modulation.
机译:在这里,我们审查经颅磁刺激(TMS)在调制皮质网络中可能会产生健康的人类受试者的性能增强的方式的有用性。迄今为止,已有六十多项研究报告说,在涉及感知,运动和执行处理的各种任务中,速度和准确性都有了显着提高。该文献提出了增强机制的两个基本类别:对皮质区域或网络的直接调制,可导致更有效的处理;加法减法,这是与任务性能竞争或分心的处理中断。讨论了TMS认知增强的潜在应用,包括对皮层功能的研究,神经和精神疾病的康复治疗以及健康个体的加速技能获取,以及优化TMS诱导的性能增强的幅度和持续时间(例如改善)的方法。通过将脑成像与TMS进一步集成来实现目标定位。一种将TMS的多个会话与并发的TMS /任务性能相结合以诱导类似Hebbian的学习的技术似乎有望延长增强效果。尽管仍可以进一步改进TMS在认知增强中的应用,并且仍存在有关观察到的效应的潜在机制的疑问,但这似乎是一个富有成果的研究领域,可以阐明认知功能及其治疗的基本机制。调制。

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