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左半球中风后语言的神经可塑性:将亚秒级电生理学与结构连接联系起来的证据。

Neuroplasticity of language in left-hemisphere stroke: Evidence linking subsecond electrophysiology and structural connections.

作者信息

Piai Vitória, Meyer Lars, Dronkers Nina F, Knight Robert T

机构信息

Radboud University, Donders Centre for Cognition, Nijmegen, the Netherlands.

Radboudumc, Department of Medical Psychology, Nijmegen, the Netherlands.

出版信息

Hum Brain Mapp. 2017 Jun;38(6):3151-3162. doi: 10.1002/hbm.23581. Epub 2017 Mar 27.

Abstract

The understanding of neuroplasticity following stroke is predominantly based on neuroimaging measures that cannot address the subsecond neurodynamics of impaired language processing. We combined behavioral and electrophysiological measures and structural-connectivity estimates to characterize neuroplasticity underlying successful compensation of language abilities after left-hemispheric stroke. We recorded the electroencephalogram from patients with stroke lesions to the left temporal lobe and from matched controls during context-driven word retrieval. Participants heard lead-in sentences that either constrained the final word ("He locked the door with the") or not ("She walked in here with the"). The last word was shown as a picture to be named. Individual-participant analyses were conducted, focusing on oscillatory power as a subsecond indicator of a brain region's functional neurophysiological computations. All participants named pictures faster following constrained than unconstrained sentences, except for two patients, who had extensive damage to the left temporal lobe. Left-lateralized alpha-beta oscillatory power decreased in controls pre-picture presentation for constrained relative to unconstrained contexts. In patients, the alpha-beta power decreases were observed with the same time course as in controls but were lateralized to the intact right hemisphere. The right lateralization depended on the probability of white-matter connections between the bilateral temporal lobes. The two patients who performed poorly behaviorally showed no alpha-beta power decreases. Our findings suggest that incorporating direct measures of neural activity into investigations of neuroplasticity can provide important neural markers to help predict language recovery, assess the progress of neurorehabilitation, and delineate targets for therapeutic neuromodulation. Hum Brain Mapp 38:3151-3162, 2017. © 2017 Wiley Periodicals, Inc.

摘要

对中风后神经可塑性的理解主要基于神经影像学测量,而这些测量无法解决受损语言处理的亚秒级神经动力学问题。我们结合行为学和电生理学测量以及结构连接性估计,以表征左半球中风后语言能力成功代偿背后的神经可塑性。我们在情境驱动的单词检索过程中,记录了左侧颞叶有中风损伤的患者和匹配对照组的脑电图。参与者听到引导句,这些引导句要么限制最后一个单词(“他用……锁门”),要么不限制(“她带着……走进这里”)。最后一个单词以图片形式呈现并要求命名。进行了个体参与者分析,重点关注振荡功率,将其作为大脑区域功能性神经生理计算的亚秒级指标。除了两名左侧颞叶有广泛损伤的患者外,所有参与者在有约束的句子之后比无约束的句子能更快地说出图片名称。在对照组中,相对于无约束情境,在图片呈现前,有约束情境下左侧化的α-β振荡功率降低。在患者中,观察到α-β功率降低的时间进程与对照组相同,但偏向于完整的右半球。右侧化取决于双侧颞叶之间白质连接的概率。行为表现较差的两名患者没有出现α-β功率降低。我们的研究结果表明,将神经活动的直接测量纳入神经可塑性研究中,可以提供重要的神经标志物,以帮助预测语言恢复、评估神经康复进展并确定治疗性神经调节的靶点。《人类大脑图谱》38:3151 - 3162,2017年。© 2017威利期刊公司。

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