WOEXP: 414 - Rest versus semantic memory
 
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Rest versus semantic memory. Rest with eyes closed versus recalling and speak aloud words that start with a specific letter. WOEXP: 414.

Nancy C. Andreasen; Daniel S. O'Leary; Ted Cizadlo; Stephan Arndt; Karim Rezai; G. Leonard Watkins; Laura L. Ponto; Richard D. Hichwa. Remembering the past: two facets of episodic memory explored with positron emission tomography. American Journal of Psychiatry 152(11):1576-1585, 1995. PMID: 7485619. FMRIDCID: . BrainMap: 219. WOBIB: 134.


WOEXT: 194.

Modality:PET/MRI
Measured variable: CBF
Tracer: O-15 Water
Scanner: GE PC4096-plus
Number of subjects: 13

Asymmetry: 0.92969 (left: -1, right: +1)

  x     y     z   Lobar anatomy Functional area WOROI Value
2 46 -19 Anterior inferior medial frontal      
10 38 57 Right frontal      
44 -9 10 Right insula      
50 -39 -24 Right inferior posterior temporal      
-44 -60 18 Left angular/supramarginal      
47 -60 16 Right angular/supramarginal      
4 -48 -19 Precuneus/retrosplenial cingulate      

corner cube of volume 414 (Rest versus semantic memory)

[ PNG | VRML (92Kb) ]

Related - positive correlated volumes

+1: 1.00000 Rest versus semantic memory. Rest with eyes closed versus recalling and speak aloud words that start with a specific letter. WOEXP: 414.
Nancy C. Andreasen; Daniel S. O'Leary; Ted Cizadlo; Stephan Arndt; Karim Rezai; G. Leonard Watkins; Laura L. Ponto; Richard D. Hichwa. Remembering the past: two facets of episodic memory explored with positron emission tomography. American Journal of Psychiatry 152(11):1576-1585, 1995. PMID: 7485619. FMRIDCID: . BrainMap: 219. WOBIB: 134.

+2: 0.46964 Resting versus novel word recall. Resting versus speak load words recalled from a list of 15 words heard only one time just prior to recall. WOEXP: 274.
Nancy C. Andreasen; D. S. O'Leary; T. Cizadlo; Stephan Arndt; K. Rezai; G. L. Watkins; L. L. Ponto; R. D. Hichwa. II. PET studies of memory: novel versus practiced free recall of word lists. NeuroImage 2(4):296-305, 1995. PMID: 9343614. WOBIB: 85.

+3: 0.45441 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: 0.43345 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.

+5: 0.39235 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.

+6: 0.37961 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.

+7: 0.35241 Rest versus practiced word recall. Resting versus speak load words recalled from a list of 15 words practiced one week before. WOEXP: 272.
Nancy C. Andreasen; D. S. O'Leary; T. Cizadlo; Stephan Arndt; K. Rezai; G. L. Watkins; L. L. Ponto; R. D. Hichwa. II. PET studies of memory: novel versus practiced free recall of word lists. NeuroImage 2(4):296-305, 1995. PMID: 9343614. WOBIB: 85.

+8: 0.34264 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.

+9: 0.33858 Decreases in rapid auditory processing. Linear decrease as a function of compression/presentation speed of auditorily presented sentences that were to be determine semantically true with button press. WOEXP: 523.
Russell A. Poldrack; Elise Temple; Athanassios Protopapas; Srikantan Nagarajan; Paula Tallal; Michael Merzenich; John D. E. Gabrieli. Relations Between the Neural Bases of Dynamic Auditory Processing and Phonological Processing: Evidence from fMRI. Journal of Cognitive Neuroscience 13(5):687-697, 2001. PMID: 11506664. FMRIDCID: 2-2001-111KR. WOBIB: 171.

+10: 0.32919 Negative interaction between predictable tones and button press. Negative interaction between predictable tones and self-paced button presses versus no button presses and random tones with button press. WOEXP: 261.
S. J. Blakemore; Geraint Rees; C. D. Frith. How do we predict the consequences of our actions? A functional imaging study. Neuropsychologia 36(6):521-9, 1998. PMID: 9705062. WOBIB: 82.

+11: 0.32451 Decreases in self-paced button press while listening to tones. Decreases in self-paced button presses with the thumb of the right hand versus no movement. Both condition when listening to tones. WOEXP: 257.
S. J. Blakemore; Geraint Rees; C. D. Frith. How do we predict the consequences of our actions? A functional imaging study. Neuropsychologia 36(6):521-9, 1998. PMID: 9705062. WOBIB: 82.

+12: 0.32145 Rest versus focused episodic memory. Rest with eyes closed versus recalling a personal event from the past and describing the event aloud. WOEXP: 412.
Nancy C. Andreasen; Daniel S. O'Leary; Ted Cizadlo; Stephan Arndt; Karim Rezai; G. Leonard Watkins; Laura L. Ponto; Richard D. Hichwa. Remembering the past: two facets of episodic memory explored with positron emission tomography. American Journal of Psychiatry 152(11):1576-1585, 1995. PMID: 7485619. FMRIDCID: . BrainMap: 219. WOBIB: 134.

+13: 0.32030 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.

+14: 0.31020 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.

+15: 0.30387 Decrease during public speaking for subjects with social phobia. Decrease in the interaction between public speaking to an audience about past experiences and subjects with social phobia versus privat speaking about past experience and subjects with no social phobia. WOEXP: 242.
M. Tillfors; T. Furmark; I. Marteinsdottir; Håkan Fischer; A. Pissiota; B. Langstrom; M. Fredrikson. Cerebral blood flow in subjects with social phobia during stressful speaking tasks: a PET study. American Journal of Psychiatry 158(8):1220-6, 2001. PMID: 11481154. WOBIB: 77.

+16: 0.28522 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.

+17: 0.28180 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.

+18: 0.27781 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.

+19: 0.26940 Unpredictable tones versus predictable. Unpredictable tones with random intervals independent of self-paced button presses versus tones dependent on button press. WOEXP: 258.
S. J. Blakemore; Geraint Rees; C. D. Frith. How do we predict the consequences of our actions? A functional imaging study. Neuropsychologia 36(6):521-9, 1998. PMID: 9705062. WOBIB: 82.

+20: 0.26088 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.

+21: 0.25670 Fixation versus word identification. Fixation on a central cross on the screen versus reading aloud of visually presented words. WOEXP: 117.
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.

+22: 0.25567 Passive versus active. Hypothesis generation and testing group versus hypothesis generation group. Passive state with simulus versus active states in connection with visual information processing task: same-different discrimination, visual search, spatial attention, language, memory, cross-modal imagery. Areas where changes where seen in the combined hypothesis generation and testing group but not in the hypothesis generation group alone. WOEXP: 532.
Gordon L. Shulman; Julie A. Fiez; Maurizio Corbetta; Randy L. Buckner; Francis M. Miezin; Marcus E. Raichle; Steven E. Petersen. Common Blood Flow Changes across Visual Tasks: II. Decreases in Cerebral Cortex. Journal of Cognitive Neuroscience 9(5):648-663, 1997. FMRIDCID: . WOBIB: 173.

+23: 0.25205 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.

+24: 0.25199 Spatial neglect. Patients with spatial neglect and right brain damage from infarct or hemorrhage versus right brain damage patients without spatial neglect. WOEXP: 185.
Hans-Otto Karnath; S. Ferber; M. Himmelbach. Spatial awareness is a function of the temporal not the posterior parietal lobe. Nature 411(6840):950-3, 2001. PMID: 11418859. DOI: 10.1038/35082075. WOBIB: 59.

+25: 0.23276 Immediate pointing versus previous target pointing. Movement of a stylus with the right hand for the movement of a screen cursor from a central fixation point to an immediate target in the periphery versus movement to a target from the previous presentation. WOEXP: 576.
F. 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.


Antirelated - negatively correlated volumes

-1: -0.09038 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.

-2: -0.07184 Meditation with bodily sensation versus resting. Yoga Nidra: verbal guidance to the experience of the weight of individual body parts. WOEXP: 67.
Hans C. Lou; Troels W. Kjaer; Lars Friberg; G. Wildschiodtz; Søren Holm; Markus Nowak. A 15O-H2O PET study of meditation and the resting state of normal consciousness. Human Brain Mapping 7(2):98-105, 1999. PMID: 9950067. WOBIB: 22.

-3: -0.06763 Visual pursuit tracking. Visual pursuit tracking eye movement by following a white spot on a screen moving sinusoidal along the horizontal meridian versus central fixation. WOEXP: 149.
R. 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.

-4: -0.06378 Names versus occupation. Retrieval and whispering of names from presented photographs of faces. Conjunction between newly learned face and famous face. WOEXP: 137.
Takashi Tsukiura; Toshikatsu Fujii; Reiko Fukatsu; Taisuke Otsuki; Jiro Okuda; Atsushi Umetsu; Kyoko Suzuki; Michio Tabuchi; Isao Yanagawa; Tatsuo Nagasaka; Ryuta Kawashima; Hiroshi Fukuda; Shoki Takahashi; Atsushi Yamadori. Neural basis of the retrieval of people's names: evidence from brain-damaged patients and fMRI. Journal of Cognitive Neuroscience 14(6):922-37, 2002. PMID: 12191459. DOI: 10.1162/089892902760191144. FMRIDCID: 2-2002-112QC. WOBIB: 41.

-5: -0.06304 Visuospatial 2-back, Boston site. Viewing of dots in one of four displayed boxes with button pressing for indicating where the dot occured two trials back versus pressing buttons in zero-back. WOEXP: 352.
B. J. Casey; Jonathan D. Cohen; K. O'Craven; Richard J. Davidson; W. Irwin; C. A. Nelson; D. C. Noll; X. Hu; M. J. Lowe; B. R. Rosen; C. L. Truwitt; P. A. Turski. Reproducibility of fMRI results across four institutions using a spatial working memory task. NeuroImage 8(3):249-261, 1998. PMID: 9758739. FMRIDCID: . WOBIB: 116.

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