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A Transcranial Alternating Current Stimulator for Neural Entrainment

机译:用于神经训练的经颅交流电刺激器

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Human cognition, perception, and memory are partially attributed to the synchronicity of neuronal dynamics in the prefrontal cortex, and growing evidence indicates that age-related decline in working memory is causally linked to dissonance in neuronal firing patterns. Neuromodulation of spike timing has been classically considered an invasive process, met with resistance due to technological and ethical constraints. Thus, non-invasive neurostimulation techniques have been used to treat and manage a diverse range of health conditions, and more recently it has been suggested to enhance human cognition and working memory. In this paper, we propose a low-cost transcranial alternating current neurostimulator wearable targeting frequencies in the theta wave band (4–8 Hz), which are crucial for the functioning of normal memory and attention. Prior work on transcranial stimulation indicates that modulating large-scale neural activity is achievable through both entrainment and resonance effects, by recruiting a larger population of neurons into task-relevant rhythmic firing networks. We conduct a simulation current density within the brain in response to the wearable, using SimNIBS, followed by experimental results of our board-level implementation with a test study of various electrodes, by connecting them to an impedance of 20 kΩ.
机译:人类的认知,知觉和记忆部分归因于前额叶皮层神经元动力学的同步性,越来越多的证据表明与年龄相关的工作记忆下降与神经元放电方式的失调有因果关系。尖峰时间的神经调节在传统上被认为是一种侵入性过程,由于技术和伦理上的限制而受到了抵制。因此,非侵入性神经刺激技术已被用于治疗和管理各种健康状况,并且最近已提出增强人类认知和工作记忆的技术。在本文中,我们提出了一种低成本的经颅交流电神经刺激器,可穿戴的目标频率为theta波段(4–8 Hz),这对于正常记忆和注意力的发挥至关重要。先前关于经颅刺激的研究表明,通过招募更多的神经元进入与任务相关的有节奏的激发网络,可以通过夹带和共振效应来调节大规模的神经活动。我们使用SimNIBS对可穿戴设备进行响应以模拟大脑内部的电流密度,然后通过将各个电极连接到20kΩ的阻抗,对板级实现的实验结果进行各种电极的测试研究。

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