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首页> 外文期刊>NeuroImage >Neuroplastic changes following rehabilitative training correlate with regional electrical field induced with tDCS.
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Neuroplastic changes following rehabilitative training correlate with regional electrical field induced with tDCS.

机译:康复训练后的神经塑性变化与tDCS诱导的区域电场有关。

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Transcranial direct current stimulation (tDCS) has recently emerged as a promising approach to enhance neurorehabilitative outcomes. However, little is known about how the local electrical field generated by tDCS relates to underlying neuroplastic changes and behavior. To address this question, we present a case study analysis of an individual with hemianopia due to stroke and who benefited from a combined visual rehabilitation training and tDCS treatment program. Activation associated with a visual motion perception task (obtained by functional magnetic resonance imaging; fMRI) was used to characterize local changes in brain activity at baseline and after training. Individualized, high-resolution electrical field modeling reproducing precise cerebral and lesioned tissue geometry, predicted distortions of current flow in peri-lesional areas and diffuse clusters of peak electric fields. Using changes in fMRI signal as an index of cortical recovery, correlations to the electrical field map were determined. Significant correlations between the electrical field and change in fMRI signal were region specific including cortical areas under the anode electrode and peri-lesional visual areas. These patterns were consistent with effective tDCS facilitated rehabilitation. We describe the methodology used to analyze tDCS mechanisms through combined fMRI and computational modeling with the ultimate goal of developing a rationale for individualized therapy.
机译:经颅直流电刺激(tDCS)最近已成为增强神经康复成果的一种有前途的方法。但是,关于tDCS产生的局部电场如何与潜在的神经塑性变化和行为相关的了解甚少。为了解决这个问题,我们提供了一项案例分析,该案例分析了因中风而患有偏盲并受益于视觉康复培训和tDCS治疗计划相结合的患者。与视觉运动感知任务相关的激活(通过功能磁共振成像; fMRI获得)用于表征基线和训练后大脑活动的局部变化。个性化的高分辨率电场建模可重现精确的大脑和病变组织几何形状,预测病变周围区域的电流畸变和峰值电场的弥散簇。使用功能磁共振成像信号的变化作为皮层恢复的指标,确定与电场图的相关性。电场与fMRI信号变化之间的显着相关性是特定于区域的,包括阳极下方的皮质区域和病灶周围的视觉区域。这些模式与有效的tDCS促进康复相一致。我们描述了用于通过结合功能磁共振成像和计算模型来分析tDCS机制的方法,其最终目的是为个体化治疗制定基本原理。

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