WOROI: 307 - Intraparietal sulcus
 
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WOROI: 307 - Intraparietal sulcus


External databases

Taxonomy

ParentsSiblingsChildren
Parietal lobe
  Left intraparietal sulcus
Right intraparietal sulcus

Talairach coordinates

  x     y     z   Lobar anatomy WOBIB WOEXP
30 -56 44 Right intraparietal sulcus 3 6
-18 -62 45 Left intraparietal sulcus 3 6
40 -40 46 Right intraparietal sulcus 10 25
36 -60 47 Right intraparietal sulcus 10 25
-40 -41 35 Left intraparietal sulcus 10 27
44 -52 47 Right intraparietal sulcus 10 27
40 -37 42 Right intraparietal sulcus 10 27
-36 -48 43 Left intraparietal sulcus 10 27
32 -60 36 Right intraparietal sulcus 10 27
32 -45 39 Right intraparietal sulcus 10 27
44 -29 46 Right intraparietal sulcus 23 73
39 -38 63 Right intraparietal sulcus 24 77
33 -44 55 Right intraparietal sulcus 24 77
39 -38 52 Right intraparietal sulcus 24 77
-36 -41 57 Left intraparietal sulcus 24 77
-39 -33 46 Right intraparietal sulcus 24 77
-28 -60 47 Left intraparietal sulcus 25 78
28 -60 47 Right intraparietal sulcus 25 78
-28 -60 47 Left intraparietal sulcus 25 79
24 -64 47 Right intraparietal sulcus 25 79
-28 -60 47 Left intraparietal sulcus 25 80
24 -64 47 Right intraparietal sulcus 25 80
32 -60 47 Right intraparietal sulcus 25 81
28 -64 47 Right intraparietal sulcus 25 82
-28 -60 47 Left intraparietal sulcus 25 83
36 -48 50 Right intraparietal sulcus 25 83
-24 -60 47 Left intraparietal sulcus 25 84
24 -52 54 Right intraparietal sulcus 25 84
-24 -60 47 Left intraparietal sulcus 25 85
24 -52 54 Right intraparietal sulcus 25 85
-28 -60 47 Left intraparietal sulcus 25 86
24 -60 47 Right intraparietal sulcus 25 86
-32 -66 42 Left intraparietal sulcus 28 90
26 -54 44 Right intraparietal sulcus 28 90
-43 -46 47 Left intraparietal sulcus 28 92
34 -44 53 Right intraparietal sulcus 28 92
-30 -57 52 Intraparietal sulcus 46 149
27 -56 53 Intraparietal sulcus 46 149
-31 -52 48 Intraparietal sulcus 46 150
23 -59 51 Intraparietal sulcus 46 150
-26 -50 46 Left middle intraparietal sulcus 48 156
41 -68 42 Intraparietal sulcus/inferior parietal lobule 48 157
-31 -53 28 Intraparietal sulcus 48 158
44 -25 42 Intraparietal sulcus/postcentral sulcus 48 159
-30 -51 62 Left intraparietal sulcus 51 170
40 -60 40 Right intraparietal sulcus 54 177
48 -29 54 Intraparietal sulcus 65 203
-50 -50 40 Lateral bank of the intraparietal sulcus 109 338
-33 -57 48 Left intraparietal sulcus 121 375
30 -76 35 Right intraparietal sulcus 121 375
-33 -57 48 Left intraparietal sulcus 121 377
30 -76 35 Right intraparietal sulcus 121 377
-33 -57 48 Left intraparietal sulcus 121 379
30 -76 35 Right intraparietal sulcus 121 379

Summary

  x     y     z   Description
-31 -54 46 Mean coordinate in left hemisphere
33 -53 47 Mean coordinate in right hemisphere
32 -53 46 Mean coordinate with ignored left/right
18 -76 28 Minimum coordinate with ignored left/right
50 -25 63 Maximum coordinate with ignored left/right
7 11 7 Standard deviation with ignored left/right
corner cube of WOROI: 307 - Intraparietal sulcus

Text contexts

By contrast, faces with averted gaze (again, regardless of head orientation) yielded increased correlation between activity in the fusiform and the intraparietal sulcus, a region associated with shifting attention to the peripheryN. George; J. Driver; R. J. Dolan. Seen gaze-direction modulates fusiform activity and its coupling with other brain areas during face processing. NeuroImage 13(6 Pt 1):1102-12, 2001. PMID: 11352615. DOI: 10.1006/nimg.2001.0769. WOBIB: 18.
Cortical activation converged to demonstrate bilateral core regions in the superior and inferior parietal lobe (centered on the intraparietal sulcus), which were similarly activated during all three mental rotation tasksK. Jordan; H. J. Heinze; K. Lutz; M. Kanowski; L. Jancke. Cortical activations during the mental rotation of different visual objects. NeuroImage 13(1):143-52, 2001. PMID: 11133317. DOI: 10.1006/nimg.2000.0677. WOBIB: 25.
Pursuit performance, relative to visual fixation, elicited activation in three areas known to contribute to eye movements in humans and in nonhuman primates: the frontal eye field, supplementary eye field, and intraparietal sulcusR. A. Berman; C. L. Colby; C. R. Genovese; J. T. Voyvodic; B. Luna; K. R. Thulborn; J. A. Sweeney. Cortical networks subserving pursuit and saccadic eye movements in humans: an FMRI study. Human Brain Mapping 8(4):209-25, 1999. PMID: 10619415. WOBIB: 46.
The only site activated during manipulation with the tool, compared with the fingers, with the right hand was the lateral edge of the right intraparietal sulcus (IPS)K. Inoue; R. Kawashima; Motoaki Sugiura; A. Ogawa; T. Schormann; Karl Zilles; Hiroshi Fukuda. Activation in the ipsilateral posterior parietal cortex during tool use: a PET study. NeuroImage 14(6):1469-75, 2001. PMID: 11707103. DOI: 10.1006/nimg.2001.0942. WOBIB: 48.
Duringimmediate pointingthere was additional activation of left inferior parietal lobule close to the intraparietal sulcus, and when compared withpointing to the previous,dorsolateral prefrontal cortex bilaterallyF. Lacquaniti; Daniela Perani; E. Guigon; V. Bettinardi; M. Carrozzo; F. Grassi; Yves Rossetti; F. Fazio. Visuomotor Transformations for Reaching to Memorized Targets: A PET study. NeuroImage 5(2):129-146, 1997. PMID: 9345543. DOI: 10.1006.nimg.1996.0254. FMRIDCID: . WOBIB: 182.
In particular, the specific activation of intraparietal sulcus and prefrontal cortex inimmediate pointingappears characteristic of a network for visuospatial working memoryF. Lacquaniti; Daniela Perani; E. Guigon; V. Bettinardi; M. Carrozzo; F. Grassi; Yves Rossetti; F. Fazio. Visuomotor Transformations for Reaching to Memorized Targets: A PET study. NeuroImage 5(2):129-146, 1997. PMID: 9345543. DOI: 10.1006.nimg.1996.0254. FMRIDCID: . WOBIB: 182.

Text count

Bib -> Asymmetry | Author | ICA | NMF | Novelty | Statistics | SVD | Title | WOBIB ]
Roi -> Alphabetic | Hammers | Tzourio-Mazoyer | Svarer | Top | Functional areas | Brodmann areas ]
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