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The Role of Transcranial Magnetic Stimulation in Understanding Attention-related Networks in Single Subjects

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Date 2022 Oct 17
PMID 36246510
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Abstract

Attention is a cognitive mechanism that has been studied through several methodological viewpoints, including animal models, MRI in stroke patients, and fMRI in healthy subjects. Activation-based fMRI research has also pointed to specific networks that activate during attention tasks. Most recently, network neuroscience has been used to study the functional connectivity of large-scale networks for attention to reveal how strongly correlated networks are to each other when engaged in specific behaviors. While neuroimaging has revealed important information about the neural correlates of attention, it is crucial to better understand how these processes are organized and executed in the brain in single subjects to guide theories and treatments for attention. Noninvasive brain stimulation is an effective tool to causally manipulate neural activity to detect the causal roles of circuits in behavior. We describe how combining transcranial magnetic stimulation (TMS) with modern precision network analysis in single-subject neuroimaging could test the roles of regions, circuits, and networks in regulating attention as a pathway to improve treatment effect magnitudes and specificity.

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References
1.
Gratton C, Laumann T, Nielsen A, Greene D, Gordon E, Gilmore A . Functional Brain Networks Are Dominated by Stable Group and Individual Factors, Not Cognitive or Daily Variation. Neuron. 2018; 98(2):439-452.e5. PMC: 5912345. DOI: 10.1016/j.neuron.2018.03.035. View

2.
Muggleton N, Postma P, Moutsopoulou K, Nimmo-Smith I, Marcel A, Walsh V . TMS over right posterior parietal cortex induces neglect in a scene-based frame of reference. Neuropsychologia. 2006; 44(7):1222-9. DOI: 10.1016/j.neuropsychologia.2005.10.004. View

3.
Lee K, Ahn K, Keller E . Saccade generation by the frontal eye fields in rhesus monkeys is separable from visual detection and bottom-up attention shift. PLoS One. 2012; 7(6):e39886. PMC: 3384609. DOI: 10.1371/journal.pone.0039886. View

4.
Downar J, Crawley A, Mikulis D, Davis K . A multimodal cortical network for the detection of changes in the sensory environment. Nat Neurosci. 2000; 3(3):277-83. DOI: 10.1038/72991. View

5.
Raichle M . Two views of brain function. Trends Cogn Sci. 2010; 14(4):180-90. DOI: 10.1016/j.tics.2010.01.008. View