WOEXP: 45 - Skill learning: Early mirror-reading versus late mirror-reading
 
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Skill learning: Early mirror-reading versus late mirror-reading. Lexical decision task determining word or non-word on visually presented either plain text or mirror-reversed text. WOEXP: 45.

Russell A. Poldrack; John E. Desmond; Gary H. Glover; John D. E. Gabrieli. The neural basis of visual skill learning: an fMRI study of mirror reading. Cerebral Cortex 8(1):1-10, 1998. PMID: 9510380. WOBIB: 15.

Perception,Vision - Mirror-reversed words
Cognition,Memory - Implicit
Cognition,Memory - Skill learning
WOEXT: 33.

Modality:fMRI
Measured variable: BOLD
Tracer:
Scanner: GE Medical Systems, Signa 3.0T
Number of subjects: 6

Asymmetry: 0.64072 (left: -1, right: +1)

  x     y     z   Lobar anatomy Functional area WOROI Value
0 -72 40 Precuneus      
-3 -72 53 Left superior parietal      
34 -64 -33 Right cerebellum      
-43 -56 -3 Left fusiform      
66 -32 15 Right superior temporal      
-4 -87 -5 Left lingual gyrus      
-38 -95 13 Left middle/inferior occipital      
-19 -95 20        
-44 -87 -3        
-47 -79 21        
25 -95 21 Right middle/inferior occipital      
45 -87 3        
27 -79 -26 Right cerebellum      
32 -48 -36        
31 -56 49 Right superior parietal      
47 -64 40 Right inferior parietal      
58 -41 -15 Right inferior temporal      
47 -56 -10        
12 -33 -7        

corner cube of volume 45 (Skill learning: Early mirror-reading versus late mirror-reading)

[ PNG | VRML (135Kb) ]

Related - positive correlated volumes

+1: 1.00000 Skill learning: Early mirror-reading versus late mirror-reading. Lexical decision task determining word or non-word on visually presented either plain text or mirror-reversed text. WOEXP: 45.
Russell A. Poldrack; John E. Desmond; Gary H. Glover; John D. E. Gabrieli. The neural basis of visual skill learning: an fMRI study of mirror reading. Cerebral Cortex 8(1):1-10, 1998. PMID: 9510380. WOBIB: 15.

+2: 0.50531 Silent reading of proper words and pseudowords. Silent reading of visually presented proper and psudowords versus resting. WOEXP: 394.
Andrea Mechelli; Karl J. Friston; Cathy J. Price. The effects of presentation rate during word and pseudoword reading: a comparison of PET and fMRI. Journal of Cognitive Neuroscience 12 Suppl 2():145-156, 2000. PMID: 11506654. DOI: 10.1162/089892900564000. FMRIDCID: 2-2000-11189. WOBIB: 129.

+3: 0.48907 Item specific learning. Lexical decision task determining word or non-word on visually presented either plain text or mirror-reversed text. WOEXP: 46.
Russell A. Poldrack; John E. Desmond; Gary H. Glover; John D. E. Gabrieli. The neural basis of visual skill learning: an fMRI study of mirror reading. Cerebral Cortex 8(1):1-10, 1998. PMID: 9510380. WOBIB: 15.

+4: 0.47673 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.

+5: 0.46648 Visual exploration versus saccades. Visual search exploration versus saccade eye movement. WOEXP: 6.
Darren R. Gitelman; Todd B. Parrish; Karl J. Friston; M-Marsel Mesulam. Functional anatomy of visual search: regional segregations within the frontal eye fields and effective connectivity of the superior colliculus. NeuroImage 15(4):970-82, 2002. PMID: 11906237. DOI: 10.1006/nimg.2001.1006. WOBIB: 3.

+6: 0.46512 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.

+7: 0.45570 Word rate dependence in silent reading of proper words. Word rate dependence in silent reading of visually presented proper words. WOEXP: 400.
Andrea Mechelli; Karl J. Friston; Cathy J. Price. The effects of presentation rate during word and pseudoword reading: a comparison of PET and fMRI. Journal of Cognitive Neuroscience 12 Suppl 2():145-156, 2000. PMID: 11506654. DOI: 10.1162/089892900564000. FMRIDCID: 2-2000-11189. WOBIB: 129.

+8: 0.44921 Word rate dependence in silent reading. Word rate dependence in silent reading of visually presented proper words and pseudowords. WOEXP: 399.
Andrea Mechelli; Karl J. Friston; Cathy J. Price. The effects of presentation rate during word and pseudoword reading: a comparison of PET and fMRI. Journal of Cognitive Neuroscience 12 Suppl 2():145-156, 2000. PMID: 11506654. DOI: 10.1162/089892900564000. FMRIDCID: 2-2000-11189. WOBIB: 129.

+9: 0.44806 Word rate dependence in silent reading of pseudowords. Word rate dependence in silent reading of visually presented pseudowords. WOEXP: 401.
Andrea Mechelli; Karl J. Friston; Cathy J. Price. The effects of presentation rate during word and pseudoword reading: a comparison of PET and fMRI. Journal of Cognitive Neuroscience 12 Suppl 2():145-156, 2000. PMID: 11506654. DOI: 10.1162/089892900564000. FMRIDCID: 2-2000-11189. WOBIB: 129.

+10: 0.44743 Dynamic complex visual scene. Passive viewing and hearing of a movie (James Bond, Tomorrow never dies) with changes from color to black and white every 30 seconds and interrupted every 2.5 or 3 minutes with a blank period. Areas with high loadings in an independent component analysis.. WOEXP: 174.
Semir Zeki; R. J. Perry; A. Bartels. The processing of kinetic contours in the brain. Cerebral Cortex 13(2):189-202, 2003. PMID: 12507950. WOBIB: 52.

+11: 0.44656 Silent reading of proper words versus rest. Silent reading of visually presented proper words versus resting. WOEXP: 395.
Andrea Mechelli; Karl J. Friston; Cathy J. Price. The effects of presentation rate during word and pseudoword reading: a comparison of PET and fMRI. Journal of Cognitive Neuroscience 12 Suppl 2():145-156, 2000. PMID: 11506654. DOI: 10.1162/089892900564000. FMRIDCID: 2-2000-11189. WOBIB: 129.

+12: 0.43861 Moving dots versus stationary dots. 250 white dots moved radially from the fixation point in the middle of the screen in random directions towards the border of the screen. WOEXP: 76.
Christian Büchel; Oliver Josephs; Geraint Rees; R. Turner; C. D. Frith; Karl J. Friston. The functional anatomy of attention to visual motion. A functional MRI study. Brain 121 ( Pt 7):1281-94, 1998. PMID: 9679780. WOBIB: 24.

+13: 0.43828 Visual change. Change between two simple abstract shapes, one red and one blue visually presented on a screen versus change in auditory or tactile stimuli. WOEXP: 453.
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.

+14: 0.42312 Photographs of chairs versus houses and faces. Conjunction between passive viewing and delayed match-to sample of gray-scale photographs versus scrambled pictures and chairs versus houses and faces, with matching choice indicated by pressing a button with the right of left thumb. WOEXP: 92.
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.

+15: 0.42157 Visual human body perception during free viewing. Subjective experience of visual human body perception during free viewing and hearing of a James Bond movie. WOEXP: 384.
Andreas Bartels; Semir Zeki. Functional brain mapping during free viewing of natural scenes. Human Brain Mapping 21(2):75-85, 2004. PMID: 14755595. DOI: 10.1002/hbm.10153. WOBIB: 123.

+16: 0.41810 Color shape and motion shape (group data). Passive viewing of color shape from static isoluminant red and green oriented bars and stationary shapes by kinetic contours from motion of fields of dots versus no shape color viewing and no shape coherent visual motion. WOEXP: 172.
Semir Zeki; R. J. Perry; A. Bartels. The processing of kinetic contours in the brain. Cerebral Cortex 13(2):189-202, 2003. PMID: 12507950. WOBIB: 52.

+17: 0.41521 Alzheimer's disease versus healthy. Patients with Alzheimer's disease in mental resting state versus matched healthy controls. WOEXP: 291.
Gene E. Alexander; Kewei Chen; Pietro Pietrini; Stanley I. Rapoport; Eric M. Reiman. Longitudinal PET Evaluation of Cerebral Metabolic Decline in Dementia: A Potential Outcome Measure in Alzheimer's Disease Treatment Studies. American Journal of Psychiatry 159(5):738-45, 2002. PMID: 11986126. WOBIB: 91.

+18: 0.39870 Activation in amusement film viewing versus neutral film viewing. Passive viewing of 2.5 minute emotional film clips. WOEXP: 279.
S. Aalto; P. Naatanen; E. Wallius; L. Metsahonkala; H. Stenman; P. M. Niem; H. Karlsson. Neuroanatomical substrata of amusement and sadness: a PET activation study using film stimuli. NeuroReport 13(1):67-73, 2002. PMID: 11924897. WOBIB: 88.

+19: 0.39470 Silent reading of pseudowords versus rest. Silent reading of visually pseudowords versus resting. WOEXP: 396.
Andrea Mechelli; Karl J. Friston; Cathy J. Price. The effects of presentation rate during word and pseudoword reading: a comparison of PET and fMRI. Journal of Cognitive Neuroscience 12 Suppl 2():145-156, 2000. PMID: 11506654. DOI: 10.1162/089892900564000. FMRIDCID: 2-2000-11189. WOBIB: 129.

+20: 0.38948 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.

+21: 0.38881 Various visual motion stimuli. Various first and second order motion stimuli versus stationary visual stimuli. WOEXP: 175.
A. T. Smith; M. W. Greenlee; K. D. Singh; F. M. Kraemer; J. Hennig. The processing of first- and second-order motion in human visual cortex assessed by functional magnetic resonance imaging (fMRI). Journal of Neuroscience 18(10):3816-30, 1998. PMID: 9570811. WOBIB: 53.

+22: 0.38865 Domain level object naming versus fixation. Silent object naming on the "domain" level into "living" or "manmade" categories from visually presented colored pictures versus fixation. WOEXP: 444.
L. K. Tyler; E. A. Stamatakis; P. Bright; K. Acres; S. Abdallah; J. M. Rodd; H. E. Moss. Processing objects at different levels of specificity. Journal of Cognitive Neuroscience 16(3):351-362, 2004. PMID: 15072671. DOI: 10.1162/089892904322926692. FMRIDCID: . WOBIB: 145.

+23: 0.37999 Negative correlation to electrodermal activity. Negative correlation to nonspecific skin conductance fluctuation on the palmar side of the second phalanx of the left hand during viewing of aversive and nonaversive movies and with and without electrical shocks to the right fingers. WOEXP: 297.
M. Fredrikson; T. Furmark; M. T. Olsson; Hċkan Fischer; J. Andersson; B. Langstrom. Functional neuroanatomical correlates of electrodermal activity: a positron emission tomographic study. Psychophysiology 35(2):179-85, 1998. PMID: 9529944. WOBIB: 94.

+24: 0.37654 Photographs of faces versus houses and chairs. Conjunction between passive viewing and delayed match-to sample of gray-scale photographs versus scrambled pictures and faces versus houses and chairs, with matching choice indicated by pressing a button with the right of left thumb. WOEXP: 91.
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.

+25: 0.36560 Observation of meaningless action versus observation of meaningful action. Observation of hand and arm meaningless action showed on a video. WOEXP: 163.
Jean Decety; J. Grezes; N. Costes; Daniela Perani; Marc Jeannerod; E. Procyk; F. Grassi; F. Fazio. Brain activity during observation of actions. Influence of action content and subject's strategy. Brain 120 ( Pt 10):1763-77, 1997. PMID: 9365369. WOBIB: 49.


Antirelated - negatively correlated volumes

-1: -0.14914 Semantic versus pseudoword syllable counting via case judgment. Decision whether a visually presented word is abstract or concrete with right hand response button press versus syllable counting of peudowords with case judgment as double subtracted. WOEXP: 560.
Russell A. Poldrack; Anthony D. Wagner; Matthew W. Prull; John E. Desmond; Gary H. Glover; John D. E. Gabrieli. Functional Specialization for Sematic and Phonological Processing in the Left Inferior Prefrontal Cortex. NeuroImage 10(1):15-35, 1999. PMID: 10385578. DOI: 10.10061/nimg.1999.0441. FMRIDCID: . WOBIB: 178.

-2: -0.14344 Semantic versus case. Decision whether a visually presented word is abstract or concrete with right hand response button press versus decision based on the case of the letters in the word. WOEXP: 550.
Russell A. Poldrack; Anthony D. Wagner; Matthew W. Prull; John E. Desmond; Gary H. Glover; John D. E. Gabrieli. Functional Specialization for Sematic and Phonological Processing in the Left Inferior Prefrontal Cortex. NeuroImage 10(1):15-35, 1999. PMID: 10385578. DOI: 10.10061/nimg.1999.0441. FMRIDCID: . WOBIB: 178.

-3: -0.12561 Semantic versus syllable counting via case judgment. Decision whether a visually presented word is abstract or concrete with right hand response button press versus syllable counting with case judgment as double subtracted. WOEXP: 558.
Russell A. Poldrack; Anthony D. Wagner; Matthew W. Prull; John E. Desmond; Gary H. Glover; John D. E. Gabrieli. Functional Specialization for Sematic and Phonological Processing in the Left Inferior Prefrontal Cortex. NeuroImage 10(1):15-35, 1999. PMID: 10385578. DOI: 10.10061/nimg.1999.0441. FMRIDCID: . WOBIB: 178.

-4: -0.11828 Pseudoword syllable counting versus case judgment. Counting the number of syllables in a visually presented pseudoword versus decision based on the case of the letters in the word. WOEXP: 556.
Russell A. Poldrack; Anthony D. Wagner; Matthew W. Prull; John E. Desmond; Gary H. Glover; John D. E. Gabrieli. Functional Specialization for Sematic and Phonological Processing in the Left Inferior Prefrontal Cortex. NeuroImage 10(1):15-35, 1999. PMID: 10385578. DOI: 10.10061/nimg.1999.0441. FMRIDCID: . WOBIB: 178.

-5: -0.11805 Syllable counting versus semantic judgment. Syllable counting of visually presented words and button press with right hand versus decision whether a visually presented word is abstract or concrete. WOEXP: 555.
Russell A. Poldrack; Anthony D. Wagner; Matthew W. Prull; John E. Desmond; Gary H. Glover; John D. E. Gabrieli. Functional Specialization for Sematic and Phonological Processing in the Left Inferior Prefrontal Cortex. NeuroImage 10(1):15-35, 1999. PMID: 10385578. DOI: 10.10061/nimg.1999.0441. FMRIDCID: . WOBIB: 178.

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