Basque Center on Cognition, Brain and Language, Mikeletegi Pasealekua, 69, 20009, Donostia, Gipuzkoa, Spain.
Department of Psychology, University of Cambridge, Downing Street, Cambridge, CB2 3EB, UK.
Neuroimage. 2019 Nov 15;202:116112. doi: 10.1016/j.neuroimage.2019.116112. Epub 2019 Aug 19.
Language comprehension relies on a multitude of domain-general and domain-specific cognitive operations. This study asks whether the domain-specific grammatical computations are obligatorily invoked whenever we process linguistic inputs. Using fMRI and three complementary measures of neural activity, we tested how domain-general and domain-specific demands of single word comprehension engage cortical language networks, and whether the left frontotemporal network (commonly taken to support domain-specific grammatical computations) automatically processes grammatical information present in inflectionally complex words. In a natural listening task, participants were presented with words that manipulated domain-general and domain-specific processing demands in a 2 × 2 manner. The results showed that only domain-general demands of mapping words onto their representations consistently engaged the language processing system during single word comprehension, triggering increased activity and connectivity in bilateral frontotemporal regions, as well as bilateral encoding across multivoxel activity patterns. In contrast, inflectional complexity failed to activate left frontotemporal regions in this task, implying that domain-specific grammatical processing in the left hemisphere is not automatically triggered when the processing context does not specifically require such analysis. This suggests that cortical computations invoked by language processing critically depend on the current communicative goals and demands, underlining the importance of domain-general processes in language comprehension, and arguing against the strong domain-specific view of the LH network function.
语言理解依赖于大量的领域通用和领域特定的认知操作。本研究探讨了在处理语言输入时,是否必须调用特定于领域的语法计算。我们使用 fMRI 和三种互补的神经活动测量方法,测试了单个单词理解的领域通用和特定于领域的需求如何参与皮质语言网络,以及左额颞网络(通常用于支持特定于领域的语法计算)是否自动处理屈折复杂词中存在的语法信息。在自然听力任务中,参与者听到了以 2×2 方式操纵领域通用和特定于领域的处理需求的单词。结果表明,只有将单词映射到其表示形式的领域通用需求在单个单词理解过程中一致地参与语言处理系统,从而在双侧额颞区域引发更高的活动和连通性,以及多体素活动模式的双侧编码。相比之下,在这个任务中,屈折复杂性并没有激活左额颞区域,这意味着在处理上下文不需要这种分析时,左半球的特定于领域的语法处理不会自动触发。这表明语言处理所调用的皮质计算严重依赖于当前的交际目标和需求,突出了领域通用过程在语言理解中的重要性,并反对左半球网络功能的强烈特定于领域的观点。