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  1. Alpha rhythm of electroencephalography was modulated differently by three transcranial direct current stimulation protocols in patients with ischemic stroke.Yuanyuan Chen, Chunfang Wang, Peiqing Song, Changcheng Sun, Ying Zhang, Xin Zhao & Jingang Du - 2022 - Frontiers in Human Neuroscience 16.
    The heterogeneity of transcranial direct current stimulation protocols and clinical profiles may explain variable results in modulating excitability in the motor cortex after stroke. However, the cortical electrical effects induced by different tDCS protocols remain unclear. Here, we aimed to compare rhythm changes in electroencephalography induced by three tDCS position protocols and the association between tDCS effects and clinical factors in stroke. Nineteen patients with chronic ischemic stroke underwent four experimental sessions with three tDCS protocols [anodal, cathodal, and bilateral ] (...)
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  • From ‘Hard’ Neuro-Tools to ‘Soft’ Neuro-Toys? Refocussing the Neuro-Enhancement Debate.Jonna Brenninkmeijer & Hub Zwart - 2016 - Neuroethics 10 (3):337-348.
    Since the 1990’s, the debate concerning the ethical, legal and societal aspects of ‘neuro-enhancement’ has evolved into a massive discourse, both in the public realm and in the academic arena. This ethical debate, however, tends to repeat the same sets of arguments over and over again. Normative disagreements between transhumanists and bioconservatives on invasive or radical brain stimulators, and uncertainties regarding the use and effectivity of nootropic pharmaceuticals dominate the field. Building on the results of an extensive European project on (...)
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  • Task-concurrent anodal tDCS modulates bilateral plasticity in the human suprahyoid motor cortex.Shaofeng Zhao, Zulin Dou, Xiaomei Wei, Jin Li, Meng Dai, Yujue Wang, Qinglu Yang & Huai He - 2015 - Frontiers in Human Neuroscience 9.
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  • Opportunities for concurrent transcranial magnetic stimulation and electroencephalography to characterize cortical activity in stroke.Sumire Sato, Til Ole Bergmann & Michael R. Borich - 2015 - Frontiers in Human Neuroscience 9.
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  • A Neuroanatomical Framework for Upper Limb Synergies after Stroke.Angus J. C. McMorland, Keith D. Runnalls & Winston D. Byblow - 2015 - Frontiers in Human Neuroscience 9.
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  • Analysis of Human Gait Using Hybrid EEG-fNIRS-Based BCI System: A Review.Haroon Khan, Noman Naseer, Anis Yazidi, Per Kristian Eide, Hafiz Wajahat Hassan & Peyman Mirtaheri - 2021 - Frontiers in Human Neuroscience 14.
    Human gait is a complex activity that requires high coordination between the central nervous system, the limb, and the musculoskeletal system. More research is needed to understand the latter coordination's complexity in designing better and more effective rehabilitation strategies for gait disorders. Electroencephalogram and functional near-infrared spectroscopy are among the most used technologies for monitoring brain activities due to portability, non-invasiveness, and relatively low cost compared to others. Fusing EEG and fNIRS is a well-known and established methodology proven to enhance (...)
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  • Stuttering Severity Modulates Effects of Non-invasive Brain Stimulation in Adults Who Stutter.Emily O’Dell Garnett, Ho Ming Chow, Ai Leen Choo & Soo-Eun Chang - 2019 - Frontiers in Human Neuroscience 13.
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