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White matter structure in loneliness: Preliminary findings from diffusion tensor imaging
Tian Y.1; Liang S.1; Yuan Z.3; Chen S.2; Xu P.2; Yao D.2
2014
Source PublicationNeuroReport
ISSN1473558X 09594965
Volume25Issue:11Pages:843-847
Abstract

A pilot study was carried out to determine individual differences in perceived loneliness using diffusion tensor imaging. To the best of our knowledge, this is the first preliminary diffusion tensor imaging evidence that the ventral attention network, generally activated by attentional reorienting, was also related to loneliness. Image reconstruction results indicated significantly decreased fractional anisotropy of white matter fibers and that associated nodes of the ventral attention network are highly correlated with increased loneliness ratings. By providing evidence on the structural level, our findings suggested that attention-reorienting capabilities play an important role in shaping an individual's loneliness.

KeywordDiffusion Tensor Imaging Fractional Anisotropy Loneliness Ventral Attention Network White Matter
DOI10.1097/WNR.0000000000000197
URLView the original
Indexed BySCIE
WOS Research AreaNeurosciences & Neurology
WOS SubjectNeurosciences
WOS IDWOS:000338772700008
Scopus ID2-s2.0-84925942937
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Document TypeJournal article
CollectionBiological Imaging and Stem Cell Core
Faculty of Health Sciences
DEPARTMENT OF PUBLIC HEALTH AND MEDICINAL ADMINISTRATION
Corresponding AuthorTian Y.
Affiliation1.Chongqing University of Posts and Telecommunications
2.University of Electronic Science and Technology of China
3.Universidade de Macau
Recommended Citation
GB/T 7714
Tian Y.,Liang S.,Yuan Z.,et al. White matter structure in loneliness: Preliminary findings from diffusion tensor imaging[J]. NeuroReport, 2014, 25(11), 843-847.
APA Tian Y.., Liang S.., Yuan Z.., Chen S.., Xu P.., & Yao D. (2014). White matter structure in loneliness: Preliminary findings from diffusion tensor imaging. NeuroReport, 25(11), 843-847.
MLA Tian Y.,et al."White matter structure in loneliness: Preliminary findings from diffusion tensor imaging".NeuroReport 25.11(2014):843-847.
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