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Transcranial brain stimulation: closing the loop between brain and stimulation:closing the loop between brain and stimulation

机译:经颅脑刺激:关闭大脑和刺激之间的循环:关闭大脑和刺激之间的循环

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摘要

PURPOSE OF REVIEW: To discuss recent strategies for boosting the efficacy of noninvasive transcranial brain stimulation to improve human brain function. RECENT FINDINGS: Recent research exposed substantial intra- and inter-individual variability in response to plasticity-inducing transcranial brain stimulation. Trait-related and state-related determinants contribute to this variability, challenging the standard approach to apply stimulation in a rigid, one-size-fits-all fashion. Several strategies have been identified to reduce variability and maximize the plasticity-inducing effects of noninvasive transcranial brain stimulation. Priming interventions or paired associative stimulation can be used to ‘standardize’ the brain-state and hereby, homogenize the group response to stimulation. Neuroanatomical and neurochemical profiling based on magnetic resonance imaging and spectroscopy can capture trait-related and state-related variability. Fluctuations in brain-states can be traced online with functional brain imaging and inform the timing or other settings of transcranial brain stimulation. State-informed open-loop stimulation is aligned to the expression of a predefined brain state, according to prespecified rules. In contrast, adaptive closed-loop stimulation dynamically adjusts stimulation settings based on the occurrence of stimulation-induced state changes. SUMMARY: Approaches that take into account trait-related and state-related determinants of stimulation-induced plasticity bear considerable potential to establish noninvasive transcranial brain stimulation as interventional therapeutic tool.
机译:审查的目的:讨论增强无创经颅脑刺激以改善人脑功能的近期策略。最近的发现:最近的研究揭示了在可塑性诱导的经颅脑刺激反应中个体之间和个体之间的巨大差异。与特质相关和与状态相关的决定因素导致了这种可变性,挑战了以僵化,一刀切的方式应用刺激的标准方法。已经确定了几种策略来减少变异性并最大化无创经颅脑刺激的可塑性诱导作用。引发干预或配对联想刺激可用于“标准化”脑部状态,从而使群体对刺激的反应均匀化。基于磁共振成像和光谱学的神经解剖学和神经化学分析可以捕获特征相关和状态相关的变异性。大脑功能的波动可通过功能性脑成像在线追踪,并告知经颅脑刺激的时机或其他设置。根据预先规定的规则,状态通知的开环刺激与预定义的大脑状态的表达保持一致。相比之下,自适应闭环刺激会根据刺激引起的状态变化的发生来动态调整刺激设置。摘要:考虑到刺激诱导的可塑性的特征相关和状态相关的决定因素的方法具有建立无创性经颅脑刺激作为介入治疗工具的巨大潜力。

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