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Temporally and spatially distinct theta oscillations dissociate a language-specific from a domain-general processing mechanism across the age trajectory

机译:时间和空间上不同的theta振荡会在整个年龄轨迹上将特定语言与领域通用处理机制分离

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摘要

The cognitive functionality of neural oscillations is still highly debated, as different functions have been associated with identical frequency ranges. Theta band oscillations, for instance, were proposed to underlie both language comprehension and domain-general cognitive abilities. Here we show that the ageing brain can provide an answer to the open question whether it is one and the same theta oscillation underlying those functions, thereby resolving a long-standing paradox. While better cognitive functioning is predicted by low theta power in the brain at rest, resting state (RS) theta power declines with age, but sentence comprehension deteriorates in old age. We resolve this paradox showing that sentence comprehension declines due to changes in RS theta power within domain-general brain networks known to support successful sentence comprehension, while low RS theta power within the left-hemispheric dorso-frontal language network predicts intact sentence comprehension. The two RS theta networks were also found to functionally decouple relative to their independent internal coupling. Thus, both temporally and spatially distinct RS theta oscillations dissociate a language-specific from a domain-general processing mechanism.
机译:由于不同的功能已与相同的频率范围相关联,因此神经振荡的认知功能仍受到高度争议。例如,提出了θ带振荡作为语言理解和领域通用认知能力的基础。在这里,我们证明了衰老的大脑可以为悬而未决的问题提供答案,即这是这些功能背后的一个和相同的θ振荡,从而解决了一个长期存在的悖论。尽管静息状态下大脑的theta能力低可预示更好的认知功能,但静息状态(RS)theta能力会随着年龄的增长而下降,但句子理解力会随着年龄的增长而下降。我们解决了这一悖论,表明句子理解力下降是由于已知支持成功句子理解的领域通用大脑网络中的RS theta功率变化,而左半球背-额叶语言网络中的低RS theta功率预测了完整的句子理解力。还发现两个RS theta网络相对于其独立的内部耦合在功能上解耦。因此,时间和空间上不同的RS theta振荡都将特定语言与领域通用处理机制分离。

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