WOEXP: 499 - Bimodal audiovisual speech-reading
 
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Bimodal audiovisual speech-reading. Simultaneous hearing and seeing with lip-reading of digits versus unimodal viewing or unimodal hearing digits. WOEXP: 499.

Gemma A. Calvert; Michael J. Brammer; Edward T. Bullmore; Ruth Campbell; S. D. Iversen; Anthony S. David. Response amplification in sensory-specific cortices during crossmodal binding. NeuroReport 10(12):2619-2623, 1999. PMID: 10574380. FMRIDCID: . WOBIB: 164.

Perception,Audition - Numbers
Perception,Vision - lip-reading
WOEXT: 505.
WOEXT: 507.

Modality:fMRI
Measured variable: BOLD
Tracer:
Scanner: GE Medical Systems, Signa 1.5T
Number of subjects: 5

Asymmetry: 0.00000 (left: -1, right: +1)

  x     y     z   Lobar anatomy Functional area WOROI Value
-43 -69 3 Left middle occipital/middle temporal gyral border     1.7
-46 -69 8 Left middle occipital/middle temporal gyral border     1.9
49 -63 3 Right middle temporal gyrus     2.4
49 -56 8 Right middle temporal gyrus     1.7
57 -22 13 Left Heschl's gyrus     2.2
-46 -25 13 Right superior temporal gyrus     1.6

corner cube of volume 499 (Bimodal audiovisual speech-reading)

[ PNG | VRML (76Kb) ]

Related - positive correlated volumes

+1: 1.00000 Bimodal audiovisual speech-reading. Simultaneous hearing and seeing with lip-reading of digits versus unimodal viewing or unimodal hearing digits. WOEXP: 499.
Gemma A. Calvert; Michael J. Brammer; Edward T. Bullmore; Ruth Campbell; S. D. Iversen; Anthony S. David. Response amplification in sensory-specific cortices during crossmodal binding. NeuroReport 10(12):2619-2623, 1999. PMID: 10574380. FMRIDCID: . WOBIB: 164.

+2: 0.71285 Activation in amusement film viewing versus sadness film viewing. Passive viewing of 2.5 minute emotional film clips. WOEXP: 281.
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.

+3: 0.68597 Coherent visual motion. Coherent visual motion of dots versus static display of dots. WOEXP: 112.
E. Grossman; M. Donnelly; R. Price; D. Pickens; V. Morgan; G. Neighbor; R. Blake. Brain areas involved in perception of biological motion. Journal of Cognitive Neuroscience 12(5):711-20, 2000. PMID: 11054914. WOBIB: 33.

+4: 0.67607 Visual motion. Visual motion by viewing 100 small moving black squares versus stationary dots. WOEXP: 430.
Semir Zeki; J. D. Watson; C. J. Lueck; Karl J. Friston; C. Kennard; Richard S. J. Frackowiak. A direct demonstration of functional specialization in human visual cortex. Journal of Neuroscience 11(3):641-649, 1991. PMID: 2002358. FMRIDCID: . WOBIB: 140.

+5: 0.61770 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.

+6: 0.54201 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.

+7: 0.52842 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.

+8: 0.51982 Biological visual motion. Biological motion of dots versus scrambled motion of dots. WOEXP: 111.
E. Grossman; M. Donnelly; R. Price; D. Pickens; V. Morgan; G. Neighbor; R. Blake. Brain areas involved in perception of biological motion. Journal of Cognitive Neuroscience 12(5):711-20, 2000. PMID: 11054914. WOBIB: 33.

+9: 0.51046 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.

+10: 0.50456 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.

+11: 0.49914 Difficult chimeric natural visual object decision. Visual object decision with difficult chimeric natural object versus easy novel objects. WOEXP: 98.
Christian Gerlach; I. Law; Anders Gade; O. B. Paulson. Perceptual differentiation and category effects in normal object recognition: a PET study. Brain 122 ( Pt 11):2159-70, 1999. PMID: 10545400. WOBIB: 29.

+12: 0.47685 Decrease during viewing conditioned snake and spider video. Decrease in activation during viewing snake and spider video conditioned with an electric shock to the second phalanx of the right index and long fingers versus viewing video before conditioning. WOEXP: 311.
M. Fredrikson; G. Wik; Håkan Fischer; J. Andersson. Affective and attentive neural networks in humans: a PET study of Pavlovian conditioning. NeuroReport 7(1):97-101, 1995. PMID: 8742426. WOBIB: 99.

+13: 0.45018 Audio-visual speech with high congruent response. Heard speech and lip movements with supra-additive response to congruent signals. WOEXP: 473.
Gemma A. Calvert; Ruth Campbell; Michael J. Brammer. Evidence from functional magnetic resonance imaging of crossmodal binding in the human heteromodal cortex. Current Biology 10(11):649-657, 2000. PMID: 10837246. FMRIDCID: . WOBIB: 154.

+14: 0.43800 Recognizable visual objects. Recognizable visual objects versus unrecognizable. WOEXP: 15.
Christian Gerlach; C. T. Aaside; G. W. Humphreys; Anders Gade; O. B. Paulson; I. Law. Brain activity related to integrative processes in visual object recognition: bottom-up integration and the modulatory influence of stored knowledge. Neuropsychologia 40(8):1254-67, 2002. PMID: 11931928. WOBIB: 7.

+15: 0.43016 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.

+16: 0.42375 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.

+17: 0.41919 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.

+18: 0.41391 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.

+19: 0.40651 Photographs and line drawings of faces versus houses and chairs. Conjunction between delayed match-to sample of gray-scale photographs and line drawings versus scrambled pictures and faces versus houses and chairs, with matching choice indicated by pressing a button with the right of left thumb. WOEXP: 94.
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.

+20: 0.39917 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; Håkan 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.

+21: 0.39133 Difficult chimeric visual object decision. Visual object decision with difficult chimeric object versus easy novel objects. WOEXP: 97.
Christian Gerlach; I. Law; Anders Gade; O. B. Paulson. Perceptual differentiation and category effects in normal object recognition: a PET study. Brain 122 ( Pt 11):2159-70, 1999. PMID: 10545400. WOBIB: 29.

+22: 0.38904 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.

+23: 0.38426 Fixation versus word recognition. Fixation on a central cross on the screen versus responding to visually presented words. WOEXP: 119.
Terry L. Jernigan; A. L. Ostergaard; Ian Law; Claus Svarer; Christian Gerlach; O. B. Paulson. Brain activation during word identification and word recognition. NeuroImage 8(1):93-105, 1998. PMID: 9698579. WOBIB: 35.

+24: 0.38064 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.

+25: 0.37646 Face perception during free viewing. Subjective experience of face perception during free viewing of a James Bond movie. WOEXP: 382.
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.


Antirelated - negatively correlated volumes

-1: -0.07307 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: -0.07058 High visual orientation working memory maintenance. Maintenance of 6 serial presented oriented visual gratings in working memory and responding to a cue by pressing a key with either left or right hand versus pressing a key with either left or right hand depending on orientation of visual grating. WOEXP: 170.
L. Cornette; P. Dupont; E. Salmon; G. A. Orban. The neural substrate of orientation working memory. Journal of Cognitive Neuroscience 13(6):813-28, 2001. PMID: 11564325. DOI: 10.1162/08989290152541476. WOBIB: 51.

-3: -0.06818 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.

-4: -0.06524 Verbal fluency. Naming words beginning with a given letter while focusing on a cross on a screen versus reading color words. WOEXP: 539.
Barbara Ravnkilde; Poul Videbech; Raben Rosenberg; Albert Gjedde; Anders Gade. Putative Tests of Frontal Lobe Function: A PET-Study of Brain Activation During Stroop's Test and Verbal Fluency. Journal of Clinical and Experimental Neuropsychology 24(4):534-547, 2002. PMID: 12187466. DOI: 10.1076/jcen.24.4.534.1033. FMRIDCID: . WOBIB: 176.

-5: -0.06427 Memory retention. Memory retention of newly encoded visually presented barcodes in 4, 6 or 8 seconds in a delayed non-matching-to-sample task. WOEXP: 432.
Greig I. de Zubicaray; Katie McMahon; Stephen J. Wilson; Santhi Muthiah. Brain activity during the encoding, retention, and retrieval of stimulus representations. Learning & Memory 8(5):243-251, 2001. PMID: 11584070. DOI: 10.1101/lm.40301. FMRIDCID: . WOBIB: 141.

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