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Cold pain in left hand.
Left hand immersed in cold circulating water with a temperature of 0-0.5 degrees Celsius while either fixating or engaged in a externally driven perceptual maze task versus immersion in 19 degrees Celsius water and fixating or performing the maze task.
WOEXP: 184.
P. Petrovic; K. M. Petersson; P. H. Ghatan; S. Stone-Elander; M. Ingvar. Pain-related cerebral activation is altered by a distracting cognitive task. Pain 85(1-2):19-30, 2000. PMID: 10692599. WOBIB: 58. Perception,Somesthesis - Cold pain WOEXT: 41.
Asymmetry: 0.24609 (left: -1, right: +1)
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+1: 1.00000
Cold pain in left hand.
Left hand immersed in cold circulating water with a temperature of 0-0.5 degrees Celsius while either fixating or engaged in a externally driven perceptual maze task versus immersion in 19 degrees Celsius water and fixating or performing the maze task.
WOEXP: 184.
P. Petrovic; K. M. Petersson; P. H. Ghatan; S. Stone-Elander; M. Ingvar. Pain-related cerebral activation is altered by a distracting cognitive task.
Pain 85(1-2):19-30, 2000.
PMID: 10692599.
WOBIB: 58.
+2: 0.58706
Tics during Tourette's syndrome.
Correlation with amount of tics while Tourette patients relaxed with closed eyes.
WOEXP: 402.
E. Stern; D. A. Silbersweig; K. Y. Chee; Andrew Holmes; M. M. Robertson; M. Trimble; Christopher D. Frith; Richard S. J. Frackowiak; Raymond J. Dolan. A functional neuroanatomy of tics in Tourette syndrome.
Archives of General Psychiatry 57(8):741-748, 2000.
PMID: 10920461.
FMRIDCID: .
WOBIB: 130.
+3: 0.56134
Cold pain on right foot.
0-2 centigrades cold pain on dorsal surface of the right foot versus rest with attention to the sound of the machine.
WOEXP: 263.
U. N. Frankenstein; W. Richter; M. C. McIntyre; F. Remy. Distraction modulates anterior cingulate gyrus activations during the cold
pressor test.
NeuroImage 14(4):827-36, 2001.
PMID: 11554801.
DOI: 10.1006/nimg.2001.0883.
WOBIB: 83.
+4: 0.55774
100 Hz vibration on left forearm.
100 Hz vibration on ventral surface of the left forearm.
WOEXP: 364.
R. C. Coghill; J. D. Talbot; A. C. Evans; Ernst Meyer; Albert Gjedde; M. C. Bushnell; G. H. Duncan. Distributed processing of pain and vibration by the human brain.
Journal of Neuroscience 14(7):4095-108, 1994.
PMID: 8027764.
WOBIB: 117.
+5: 0.55475
Late phase heat pain.
50 degrees Celsius heat on the left volar forearm starting 40 seconds prior to the scanning onset versus 40 degrees warm stimulus.
WOEXP: 299.
K. L. Casey; T. J. Morrow; J. Lorenz; S. Minoshima. Temporal and spatial dynamics of human forebrain activity during heat
pain: analysis by positron emission tomography.
Journal of Neurophysiology 85(2):951-9, 2001.
PMID: 11160525.
WOBIB: 95.
+6: 0.53702
Distracted heat pain on left hand.
46 to 49 degrees Celsius hot stimuli on the thenar eminence of the left hand using a peltier thermode distracted by a visual motion task with silent counting of the number of partial coherent visual motion blocks versus distract 40 degrees warm stimuli.
WOEXP: 189.
Jonathan C. W. Brooks; Turo J. Nurmikko; William E. Bimson; Krish D. Singh; Neil Roberts. fMRI of thermal pain: effects of stimulus laterality and attention.
NeuroImage 15(2):293-301, 2002.
PMID: 11798266.
DOI: 10.1006/nimg.2001.0974.
WOBIB: 60.
+7: 0.51868
Heat pain - female.
50 degrees heat pain on the left forearm of females versus 40 degrees stimulus.
WOEXP: 368.
P. E. Paulson; S. Minoshima; T. J. Morrow; K. L. Casey. Gender differences in pain perception and patterns of cerebral activation during noxious heat stimulation in humans.
Pain 76(1-2):223-9, 1998.
PMID: 9696477.
WOBIB: 118.
+8: 0.51459
Heat pain on left hand.
Heat pain on dorsal surface of the left hand with and without a Stroop task versus warm.
WOEXP: 312.
Brent A. Vogt; Stuart Derbyshire; Anthony K. Jones. Pain processing in four regions of human cingulate cortex localized with
co-registered PET and MR imaging.
European Journal of Neuroscience 8(7):1461-73, 1996.
PMID: 8758953.
WOBIB: 100.
+9: 0.51096
Heat pain - male.
50 degrees heat pain on the left forearm of males versus 40 degrees stimulus.
WOEXP: 367.
P. E. Paulson; S. Minoshima; T. J. Morrow; K. L. Casey. Gender differences in pain perception and patterns of cerebral activation during noxious heat stimulation in humans.
Pain 76(1-2):223-9, 1998.
PMID: 9696477.
WOBIB: 118.
+10: 0.50135
Novelty seeking.
Positive correlation with novelty seeking as assessed with the Japanese version of the Cloninger's Temperament and Character Inventory.
WOEXP: 457.
Motoaki Sugiura; Ryuta Kawashima; Manabu Nakagawa; Ken Okada; Tachio Sato; Ryoi Goto; Kazunori Sato; Shuichi Ono; Torsten Schormann; Karl Zilles; Hiroshi Fukuda. Correlation between human personality and neural activity in cerebral cortex.
NeuroImage 11(5 Pt 1):541-546, 2000.
PMID: 10806039.
DOI: 10.1006/nimg.2000.0564.
FMRIDCID: .
WOBIB: 149.
+11: 0.49629
Cold pain versus cold pain with silent word reading.
0-2 centigrades cold pain on dorsal surface of the right foot versus cold pain distracted by silent word.
WOEXP: 266.
U. N. Frankenstein; W. Richter; M. C. McIntyre; F. Remy. Distraction modulates anterior cingulate gyrus activations during the cold
pressor test.
NeuroImage 14(4):827-36, 2001.
PMID: 11554801.
DOI: 10.1006/nimg.2001.0883.
WOBIB: 83.
+12: 0.47944
Cold pain on left arm.
6 degrees heat pain stimuli by immersion of the left hand in water to the wrist versus 20 degrees stimuli.
WOEXP: 320.
K. L. Casey; S. Minoshima; T. J. Morrow; R. A. Koeppe. Comparison of human cerebral activation pattern during cutaneous warmth,
heat pain, and deep cold pain.
Journal of Neurophysiology 76(1):571-81, 1996.
PMID: 8836245.
WOBIB: 102.
+13: 0.46837
Active right middle finger movement versus passive movement.
Active repetitive flexion-extension movement of the right middle finger at the metacarpophalangeal joint auditory-cued by a beep versus passive movement with beeps.
WOEXP: 270.
T. Mima; A. Ikeda; S. Yazawa; T. Kunieda; T. Nagamine; W. Taki; H. Shibasaki. Somesthetic function of supplementary motor area during voluntary
movements.
NeuroReport 10(9):1859-62, 1999.
PMID: 10501521.
WOBIB: 84.
+14: 0.46307
Heat pain on left arm.
50 degrees heat pain stimuli on six separate sites on the left volar forearm versus 40 degrees stimuli.
WOEXP: 319.
K. L. Casey; S. Minoshima; T. J. Morrow; R. A. Koeppe. Comparison of human cerebral activation pattern during cutaneous warmth,
heat pain, and deep cold pain.
Journal of Neurophysiology 76(1):571-81, 1996.
PMID: 8836245.
WOBIB: 102.
+15: 0.45326
Cold pain in right hand.
5 degrees cold pain on the palmar surface of the right hand versus normal 34 degrees.
WOEXP: 213.
A. D. Craig; Eric M. Reiman; A. Evans; M. C. Bushnell. Functional imaging of an illusion of pain.
Nature 384(6606):258-60, 1996.
PMID: 8918874.
WOBIB: 69.
+16: 0.45326
Grill illusion in right hand.
Thermal grill with spatially alternating 20 degrees cold and 40 degrees warm pain stimuli on the palmar surface of the right hand versus normal 34 degrees.
WOEXP: 215.
A. D. Craig; Eric M. Reiman; A. Evans; M. C. Bushnell. Functional imaging of an illusion of pain.
Nature 384(6606):258-60, 1996.
PMID: 8918874.
WOBIB: 69.
+17: 0.45326
Hot pain in right hand.
47 degrees hot pain on the palmar surface of the right hand versus normal 34 degrees.
WOEXP: 217.
A. D. Craig; Eric M. Reiman; A. Evans; M. C. Bushnell. Functional imaging of an illusion of pain.
Nature 384(6606):258-60, 1996.
PMID: 8918874.
WOBIB: 69.
+18: 0.44125
Distracted heat pain on right hand.
46 to 49 degrees Celsius hot stimuli on the thenar eminence of the right hand using a peltier thermode distracted by a visual motion task with silent counting of the number of partial coherent visual motion blocks versus distract 40 degrees warm stimuli.
WOEXP: 187.
Jonathan C. W. Brooks; Turo J. Nurmikko; William E. Bimson; Krish D. Singh; Neil Roberts. fMRI of thermal pain: effects of stimulus laterality and attention.
NeuroImage 15(2):293-301, 2002.
PMID: 11798266.
DOI: 10.1006/nimg.2001.0974.
WOBIB: 60.
+19: 0.43109
Romantic love.
Viewing of colored pictures of the faces of boy- or girlfriend (loved once) versus viewing of colored pictures of three friends of the same sex as their loved partner.
WOEXP: 176.
Andreas Bartels; Semir Zeki. The neural basis of romantic love.
NeuroReport 11(17):3829-3834, 2000.
PMID: 11117499.
WOBIB: 54.
+20: 0.43098
Attended heat pain on left hand.
46 to 49 degrees Celsius hot stimuli on the thenar eminence of the left hand using a peltier thermode versus 40 degrees warm stimuli.
WOEXP: 188.
Jonathan C. W. Brooks; Turo J. Nurmikko; William E. Bimson; Krish D. Singh; Neil Roberts. fMRI of thermal pain: effects of stimulus laterality and attention.
NeuroImage 15(2):293-301, 2002.
PMID: 11798266.
DOI: 10.1006/nimg.2001.0974.
WOBIB: 60.
+21: 0.42980
Hot pain on right hand during hypnosis.
Hot pain (typically 47 degrees) on the thenar surface of the right hand versus 35 degrees stimuli. During hypnosis.
WOEXP: 235.
M. E. Faymonville; S. Laureys; C. Degueldre; G. DelFiore; A. Luxen; G. Franck; M. Lamy; P. Maquet. Neural mechanisms of antinociceptive effects of hypnosis.
Anesthesiology 92(5):1257-67, 2000.
PMID: 10781270.
WOBIB: 76.
+22: 0.42814
Hot pain on right hand in rest, mental imagery and hypnosis.
Hot pain (typically 47 degrees) on the thenar surface of the right hand versus 35 degrees stimuli. During rest, mental imagery and hypnosis.
WOEXP: 233.
M. E. Faymonville; S. Laureys; C. Degueldre; G. DelFiore; A. Luxen; G. Franck; M. Lamy; P. Maquet. Neural mechanisms of antinociceptive effects of hypnosis.
Anesthesiology 92(5):1257-67, 2000.
PMID: 10781270.
WOBIB: 76.
+23: 0.42403
Attended heat pain on right hand.
46 to 49 degrees Celsius hot stimuli on the thenar eminence of the right hand using a peltier thermode versus 40 degrees warm stimuli.
WOEXP: 186.
Jonathan C. W. Brooks; Turo J. Nurmikko; William E. Bimson; Krish D. Singh; Neil Roberts. fMRI of thermal pain: effects of stimulus laterality and attention.
NeuroImage 15(2):293-301, 2002.
PMID: 11798266.
DOI: 10.1006/nimg.2001.0974.
WOBIB: 60.
+24: 0.41898
Micturition.
Micturition after the bladder had been
filled to the normal desire to void.
WOEXP: 50.
S. Nour; Claus Svarer; J. K. Kristensen; O. B. Paulson; I. Law. Cerebral activation during micturition in normal men.
Brain 123 ( Pt 4):781-9, 2000.
PMID: 10734009.
WOBIB: 17.
+25: 0.41802
Multimodal sensory change.
Change between stimuli that are either visual, auditory or tactile.
WOEXP: 456.
J. Downar; A. P. Crawley; D. J. Mikulis; K. D. Davis. A multimodal cortical network for the detection of changes in the sensory environment.
Nature Neuroscience 3(3):277-283, 2000.
PMID: 10700261.
DOI: 10.1038/72991.
FMRIDCID: .
WOBIB: 148.
-1: -0.07545
Photographs and line drawings of houses versus faces and chairs.
Conjunction between delayed match-to sample of gray-scale photographs and line drawings versus scrambled pictures and house versus faces and chairs, with matching choice indicated by pressing a button with the right of left thumb.
WOEXP: 93.
A. Ishai; L. G. Ungerleider; A. Martin; J. V. Haxby. The representation of objects in the human occipital and
temporal cortex.
Journal of Cognitive Neuroscience 12 Suppl 2:35-51, 2000.
PMID: 11506646.
DOI: 10.1162/089892900564055.
FMRIDCID: 2-2000-1113D.
WOBIB: 28.
-2: -0.07351
Photographs and line drawings of chairs versus houses and faces.
Conjunction between delayed match-to sample of gray-scale photographs and line drawings versus scrambled pictures and chairs versus houses and faces, with matching choice indicated by pressing a button with the right of left thumb.
WOEXP: 95.
A. Ishai; L. G. Ungerleider; A. Martin; J. V. Haxby. The representation of objects in the human occipital and
temporal cortex.
Journal of Cognitive Neuroscience 12 Suppl 2:35-51, 2000.
PMID: 11506646.
DOI: 10.1162/089892900564055.
FMRIDCID: 2-2000-1113D.
WOBIB: 28.
-3: -0.06858
Object decision.
Decision whether a picture represented an object or a non-object.
WOEXP: 2.
Christian Gerlach; I. Law; Anders Gade; O. B. Paulson. Categorization and category effects in normal object recognition: a PET
study.
Neuropsychologia 38(13):1693-703, 2000.
PMID: 11099727.
WOBIB: 2.
-4: -0.06835
Photographs of houses versus faces and chairs.
Conjunction between passive viewing and delayed match-to sample of gray-scale photographs versus scrambled pictures and house versus faces and chairs, with matching choice indicated by pressing a button with the right or left thumb.
WOEXP: 90.
A. Ishai; L. G. Ungerleider; A. Martin; J. V. Haxby. The representation of objects in the human occipital and
temporal cortex.
Journal of Cognitive Neuroscience 12 Suppl 2:35-51, 2000.
PMID: 11506646.
DOI: 10.1162/089892900564055.
FMRIDCID: 2-2000-1113D.
WOBIB: 28.
-5: -0.06372
Resting (group II).
Awake resting state with eyes closed versus goal-directed task.
WOEXP: 179.
Marcus E. Raichle; A. M. MacLeod; A. Z. Snyder; W. J. Powers; D. A. Gusnard; Gordon L. Shulman. A default mode of brain function.
Proc Natl Acad Sci U S A 98(2):676-82, 2001.
PMID: 11209064.
DOI: 10.1073/pnas.98.2.676.
WOBIB: 55.