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Superior longitudinal fasciculus proper
Known as:
Main component of superior longitudinal fasciculus
, Main segment of superior longitudinal fasciculus
, SLF II
National Institutes of Health
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Related topics
Related topics
4 relations
Brodmann area 46
Brodmann area 6
Brodmann area 8
Structure of superior longitudinal fasciculus
Papers overview
Semantic Scholar uses AI to extract papers important to this topic.
2020
2020
Dissociating the white matter tracts connecting the temporo-parietal cortical region with frontal cortex using diffusion tractography
E. Barbeau
,
M. Descoteaux
,
M. Petrides
Scientific Reports
2020
Corpus ID: 218671069
Three major white matter pathways connect the posterior temporal region and the adjacent inferior parietal lobule with the…
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2018
2018
Abnormal fronto‐parietal white matter organisation in the superior longitudinal fasciculus branches in autism spectrum disorders
J. Fitzgerald
,
A. Leemans
,
Elizabeth G. Kehoe
,
E. O'Hanlon
,
L. Gallagher
,
Jane McGrath
The European journal of neuroscience
2018
Corpus ID: 4328144
Core features of autism spectrum disorder (ASD) may be underpinned by disrupted functional and structural neural connectivity…
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Highly Cited
2017
Highly Cited
2017
Asymmetry and Structure of the Fronto‐Parietal Networks Underlie Visuomotor Processing in Humans
Sanja Budisavljević
,
F. Dell’Acqua
,
+4 authors
U. Castiello
Cerebral cortex
2017
Corpus ID: 4909572
Abstract Research in both humans and monkeys has shown that even simple hand movements require cortical control beyond primary…
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Highly Cited
2015
Highly Cited
2015
Structural Variability within Frontoparietal Networks and Individual Differences in Attentional Functions: An Approach Using the Theory of Visual Attention
M. Chechlacz
,
C. Gillebert
,
S. Vangkilde
,
Anders Petersen
,
G. Humphreys
The Journal of Neuroscience
2015
Corpus ID: 18618059
Visuospatial attention allows us to select and act upon a subset of behaviorally relevant visual stimuli while ignoring…
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2015
2015
Microstructure of the superior longitudinal fasciculus predicts stimulation-induced interference with on-line motor control
B. Rodríguez-Herreros
,
J. Amengual
,
+7 authors
T. Münte
NeuroImage
2015
Corpus ID: 10826671
Highly Cited
2015
Highly Cited
2015
Virtual dissection and comparative connectivity of the superior longitudinal fasciculus in chimpanzees and humans
E. Hecht
,
D. Gutman
,
B. Bradley
,
T. Preuss
,
D. Stout
NeuroImage
2015
Corpus ID: 14976489
2011
2011
Structural connectivity of the frontal lobe in children with drug-resistant partial epilepsy
R. L. Holt
,
J. Provenzale
,
+8 authors
M. Mikati
Epilepsy & Behavior
2011
Corpus ID: 159190
Highly Cited
2009
Highly Cited
2009
Delineation of the middle longitudinal fascicle in humans: a quantitative, in vivo, DT-MRI study.
N. Makris
,
G. Papadimitriou
,
Jonathan Kaiser
,
S. Sorg
,
D. Kennedy
,
D. Pandya
Cerebral cortex
2009
Corpus ID: 16424584
Experimental and imaging studies in monkeys have outlined various long association fiber bundles within the temporoparietal…
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Highly Cited
2005
Highly Cited
2005
Segmentation of subcomponents within the superior longitudinal fascicle in humans: a quantitative, in vivo, DT-MRI study.
N. Makris
,
D. Kennedy
,
+4 authors
D. Pandya
Cerebral cortex
2005
Corpus ID: 3355697
Previous research in non-human primates has shown that the superior longitudinal fascicle (SLF), a major intrahemispheric fiber…
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1994
1994
Epitope Analysis of Span‐1 and DUPAN‐2 using Synthesized Glycoconjugates Sialyllact‐N‐Fucopentaose II and Sialyllact‐N‐Tetraose
S. Kawa
,
M. Tokoo
,
+5 authors
Kazuto Sakata
Pancreas
1994
Corpus ID: 6364934
Epitope analysis of Span-1 and DUPAN-2 was compared with that of CA19-9 using the synthesized glycoconjugate sialyllacto-N…
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