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fMRI was used to explore the impact of DH on the sentence comprehension network.
One recent theory that is consonant with the above hypotheses is the role of the default mode network in narrative comprehension (Tylén et al., 2015).
A large comprehension network was found across bilateral Superior Temporal Sulcus (STS), Middle Temporal Gyrus (MTG and Superior Temporall (STS) bilaterally, in left Inferior Frontal Gyrus (IFG), left Precentral Gyrus, and Supplementary Motor Area SMAandand pre-SMA.
Furthermore, the analysis aimed to establish the effect of four design choices (scanning paradigm, non-speech baseline, the presence of a task, and the type of stimulus material) on this comprehension network.
Activations in the ALE comprehension network outside the temporal lobes (left IFG, SMA/pre-SMA, and Precentral Gyrus) were driven by the use of sentences instead of words, the scanning paradigm, or the type of non-speech baseline.
Moreover, the neural network of language comprehension processing is intrinsically related to other cognitive functions networks, such as working memory, attention, and executive function [ 8– 10].
These findings suggest that the distributed speech comprehension network expresses predictions that aid the processing of incoming acoustic information by enhancing phase-locked activity.
Thus the functional connectivity networks underlying different comprehension modes should reflect these changes in connectivity, even though they share the same anatomical connections.
miRNA and their targets can form complex regulatory networks, and the comprehension of miRNA-target relation will help the development of personalized and tailored therapies [ 213].
As regards the neural networks underpinning speech comprehension in noise, a pattern is starting to emerge involving widespread frontal and parietal activation as well as increased temporal activation [ 32].
The networks underlying naming and comprehension of objects seem to include a conceptual network that depends on bilateral anterior temporal lobes, including the temporal poles, anterior superior temporal gyri, anterior middle temporal gyri/superior temporal sulci, anterior inferior temporal gyri and fusiform gyri anterior to BA 37 (only one of which must be intact to support object concepts).
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com