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A

A critique of functional localisers (1)
機能部ä½åŒå®šã®ãŸã‚ã®äºˆå‚™å®Ÿé¨“(functional localizer)ã¸ã®æ‰¹åˆ¤

Friston KJ, Rotshtein P, Geng JJ, Sterzer P, Henson RN (NeuroImage, 2006)


A human parietal face area contains aligned head-centered visual and tactile maps (1)
ヒト頭頂葉ã«ãŠã‘ã‚‹é¡”é¸æŠžæ€§é ˜é‡Žã¯ã€äº’ã„ã«ä½ç½®åˆã‚ã›ã®ãªã•れãŸé ­éƒ¨ä¸­å¿ƒåº§æ¨™ç³»ã«åŸºã¥ã視覚・体性感覚マップを表ç¾ã—ã¦ã„ã‚‹

Sereno MI, Huang RS (Nat Neurosci. 2006)


Attending to depth: electrophysiological evidence for a viewer-centered asymmetry (1)
奥行ãã¸ã®æ³¨æ„:観察者を中心ã¨ã—ãŸéžå¯¾ç§°æ€§ã®é›»æ°—生ç†å­¦çš„ãªè¨¼æ‹ 

Parks NA, Corballis PM (NeuroReport, 2006)


Automatic attention orienting by social and symbolic cues activates different neural networks: An fMRI study (1)
「眼ã€ã¨ã€ŒçŸ¢å°ã€ã¯ç•°ãªã‚‹ç¨®é¡žã®æ³¨æ„ã‚’å–šèµ·ã™ã‚‹

Hietanen JK, Nummenmaa L, Nyman MJ, Parkkola R, Hämäläinen H (Neuroimage. 2006)


B

Brain connectivity related to working memory performance (2)
ãƒ¯ãƒ¼ã‚­ãƒ³ã‚°ãƒ¡ãƒ¢ãƒªèª²é¡Œã®æˆç¸¾ã«ç›¸é–¢ã™ã‚‹è„³å†…é ˜é‡Žé–“ã®æ©Ÿèƒ½é€£é–¢

Hampson M, Driesen NR, Skudlarski P, Gore JC, Constable RT (J Neurosci, 2006)


Brain dynamic mechanisms of scale effect in visual spatial attention (1)
視覚的注æ„ã®ã‚ºãƒ¼ãƒ ãƒ¬ãƒ³ã‚ºåŠ¹æžœã‚’ERPã§è©•価ã™ã‚‹

Song WQ, Li X, Luo YJ, Du BQ, Ji XM (Neuroreport, 2006)


Brain potential and functional MRI evidence for how to handle two languages with one brain (1)
一ã¤ã®è„³ã§äºŒã¤ã®è¨€èªžã‚’æ“る方法ã«ã¤ã„ã¦ã®è„³é›»ä½ã¨æ©Ÿèƒ½çš„ç£æ°—å…±é³´ç”»åƒæ³•ã‹ã‚‰ã®è¨¼æ‹ 

Rodriguez-Fornells A, Rotte M, Heinze HJ, Nosselt T, Munte TF (Nature, 2002)


Brain-machine interfaces: past, present and future (1)
ブレイン・マシン・インタフェース:éŽåŽ»ã€ç¾åœ¨ã€ãã—ã¦æœªæ¥

Lebedev MA, Nicolelis MA (Trends Neurosci, 2006)


C

Can attention selectively bias bistable perception? Differences between binocular rivalry and ambiguous figures (1)
注æ„ã¯é¸æŠžçš„ã«çŸ¥è¦šäº¤æ›¿ã‚’åらã›ã‚‹ã“ã¨ãŒã§ãã‚‹ã‹ï¼Ÿä¸¡çœ¼è¦–野闘争ã¨å¤šç¾©å›³å½¢ã¨ã§ã®å·®ç•°

Meng M, Tong F (J Vis, 2004)


Categorization of behavioural sequences in the prefrontal cortex (1)
å‰é ­å‰é‡Žçš®è³ªã«ãŠã‘る行動シーケンスã®ã‚«ãƒ†ã‚´ãƒªãƒ¼åŒ–

Shima K, Isoda M, Mushiake H, Tanji J (Nature, 2007)


Common neural substrates for the control and effects of visual attention and perceptual bistability (1)
視覚的注æ„ã¨çŸ¥è¦šäº¤æ›¿ã®ã‚³ãƒ³ãƒˆãƒ­ãƒ¼ãƒ«ã¨ãã®åŠ¹æžœã«å…±é€šã™ã‚‹ç¥žçµŒåŸºç›¤

Slotnick SD, Yantis S (Brain Res Cogn Brain Res, 2005)


Comparison of fMRI motion correction software tools (1)
fMRI体動アーãƒãƒ•ã‚¡ã‚¯ãƒˆè£œæ­£ã‚½ãƒ•ãƒˆã‚¦ã‚§ã‚¢ã®æ¯”較

Oakes TR, Johnstone T, Ores Walsh KS, Greischar LL, Alexander AL, Fox AS, Davidson RJ (NeuroImage, 2005)


Connection patterns distinguish 3 regions of human parietal cortex (1)
神経線維連絡ã®ãƒ‘ターンã«ã‚ˆã£ã¦ãƒ’ト頭頂葉ã¯3ã¤ã®é ˜åŸŸã«åˆ†ã‘られる

Rushworth MF, Behrens TE, Johansen-Berg H (Cereb Cortex, 2006)


Control of goal-directed and stimulus-driven attention in the brain (1)
脳内ã«ãŠã‘る目的指å‘çš„ãŠã‚ˆã³åˆºæ¿€é§†å‹•çš„ãªè¦–覚的注æ„ã®åˆ¶å¾¡æ©Ÿæ§‹

Corbetta M, Shulman GL (Nat Rev Neurosci, 2002)


Cortical substrates for exploratory decisions in humans (1)
ãƒ’ãƒˆã®æƒ…å ±æŽ¢ç´¢ã®æ„æ€æ±ºå®šã«ã‹ã‹ã‚る皮質領域

Daw ND, O’Doherty JP, Dayan P, Seymour B, Dolan RJ (Nature, 2006)


Coupling between neuronal firing, field potentials, and FMRI in human auditory cortex (1)
ヒトè´è¦šé‡Žã«ãŠã‘るニューロン発ç«ã€å±€æ‰€é›»ä½ã€fMRIä¿¡å·ã®é–“ã®çµã³ã¤ã

Mukamel R, Gelbard H, Arieli A, Hasson U, Fried I, Malach R (Science, 2005)


Cue validity modulates the neural correlates of covert endogenous orienting of attention in parietal and frontal cortex (1)
Posnerパラダイムã«ãŠã‘ã‚‹validityãŒåˆºæ¿€é§†å‹•çš„ãªæ³¨æ„ã®ç¥žçµŒåŸºç›¤ã«åŠã¼ã™åŠ¹æžœ

Vossel S, Thiel CM, Fink GR (Neuroimage. 2006)


D

Detecting awareness in the vegetative state (2)
æ¤ç‰©çŠ¶æ…‹ã«ãŠã‘ã‚‹æ„è­˜ã®æ¤œå‡º

Owen AM, Coleman MR, Boly M, Davis MH, Laureys S, Pickard JD (Science, 2006)


Development of neural mechanisms for reading (1)
書字ç†è§£ã«é–¢ã™ã‚‹ç¥žçµŒæ©Ÿæ§‹ã®ç™ºé”

Turkeltaub PE, Gareau L, Flowers DL, Zeffiro TA, Eden GF (Nat Neurosci, 2003)


Direct and fast detection of neuronal activation in the human brain with diffusion MRI (1)
æ‹¡æ•£MRIã«ã‚ˆã‚‹ãƒ’ト脳ã«ãŠã‘るニューロン活動ã®ç›´æŽ¥çš„ã‹ã¤è¿…é€Ÿãªæ¤œå‡º

Le Bihan D, Urayama S, Aso T, Hanakawa T, Fukuyama H (Proc Natl Acad Sci U S A. 2006)


Direct neurophysiological evidence for spatial suppression surrounding the focus of attention in vision (2)
視覚的注æ„ã®ç„¦ç‚¹å‘¨è¾ºã«ãŠã‘ã‚‹ç©ºé–“çš„ãªæŠ‘åˆ¶ã®ç›´æŽ¥çš„ã§ç¥žçµŒç”Ÿç†å­¦çš„ãªè¨¼æ‹ 

Hopf JM, Boehler CN, Luck SJ, Tsotsos JK, Heinze HJ, Schoenfeld MA (PNAS, 2006)


Dissociating the neural mechanisms of visual attention in change detection using functional MRI (1)
å¤‰åŒ–ã®æ¤œå‡ºã«ãŠã‘る視覚的注æ„ã®ç¥žçµŒãƒ¡ã‚«ãƒ‹ã‚ºãƒ ã®fMRIを用ã„ã¦ã®åˆ†é›¢

Huettel SA, Guzeldere G, McCarthy G (J Cogn Neurosci, 2001)


Dissociation of face-selective cortical responses by attention (2)
é¡”é¸æŠžçš„ãªè„³æ´»å‹•ã®æ³¨æ„ã«ã‚ˆã‚‹åˆ†é›¢

Furey ML, Tanskanen T, Beauchamp MS, Avikainen S, Uutela K, Hari R, Haxby JV (PNAS, 2006)


Divide and conquer: a defense of functional localizers (1)
分割ã—ã€ãã—ã¦å¾æœã›ã‚ˆï¼šæ©Ÿèƒ½éƒ¨ä½åŒå®šã®ãŸã‚ã®äºˆå‚™å®Ÿé¨“(functional localizer)ã¸ã®å¼è­·

Saxe R, Brett M, Kanwisher N (NeuroImage, 2006)


Does attention cause illusory line motion? (1)
注æ„ã¯ç·šé‹å‹•錯視を引ãèµ·ã“ã™ã‹ï¼Ÿ

Christie J, Klein RM (Percept Psychophys, 2005)


Does rejection hurt? An FMRI study of social exclusion (1)
æ‹’çµ¶ã¯ç—›ã‚€ã®ã‹ï¼Ÿæ©Ÿèƒ½çš„ç£æ°—å…±é³´ç”»åƒæ³•ã«ã‚ˆã‚‹ç¤¾ä¼šçš„疎外ã®ç ”ç©¶

Eisenberger NI, Lieberman MD, Williams KD (Science, 2003)


Dynamics of language reorganization after stroke (1)
脳å’中発症後ã®è¨€èªžæ©Ÿèƒ½å†æ§‹ç¯‰ã®ãƒ€ã‚¤ãƒŠãƒŸã‚¯ã‚¹

Saur D, Lange R, Baumgaertner A, Schraknepper V, Willmes K, Rijntjes M, Weiller C (Brain, 2006)


E

Effects of saliency, not global dominance, in patients with left parietal damage (1)
左頭頂葉æå‚·æ‚£è€…ã«ãŠã‘ã‚‹ã€å¤§å±€çš„ãªå„ªä½æ€§ã§ã¯ãªã局所的ãªé¡•著性ã®åŠ¹æžœ

Mevorach C, Humphreys GW, Shalev L (Neuropsychologia, 2006)


Electrophysiological measurement of rapid shifts of attention during visual search (1)
視覚探索ã«ãŠã‘る注æ„ã®é«˜é€Ÿç§»å‹•ã®é›»æ°—生ç†å­¦çš„æ¸¬å®š

Woodman GF, Luck SJ (Nature, 1999)


Encoding and Decoding of Overlapping Odor Sequences (1)
é‡ãªã‚Šåˆã†å—…覚系列ã®ç¬¦å·åŒ–・復å·åŒ–

Broome BM, Jayaraman V, Laurent G (Neuron, 2006)


F

Feature-selective attention enhances color signals in early visual areas of the human brain (1)
ã²ã¨ã¤ã®ç‰¹å¾´é‡ã«æ³¨æ„ãŒå‘ãã¨åˆ¥ã®ç‰¹å¾´é‡ã®çŸ¥è¦šã‚‚増強ã•れる

Müller MM, Andersen S, Trujillo NJ, Valdés-Sosa P, Malinowski P, Hillyard SA (Proc Natl Acad Sci U S A. 2006)


fMRI retinotopic mapping–step by step (1)
機能的MRIã«ã‚ˆã‚‹ãƒ¬ãƒãƒŽãƒˆãƒ”ãƒ¼æ’®åƒæ³•:段階的ã«ã‚„ã£ã¦ã¿ã‚ˆã†

Warnking J, Dojat M, Guérin-Dugué A, Delon-Martin C, Olympieff S, Richard N, Chéhikian A, Segebarth C (Neuroimage. 2002)


G

Gamma-band synchronization in visual cortex predicts speed of change detection (1)
視覚皮質ã«ãŠã‘るガンマ帯域ã®åŒèª¿åº¦ã‹ã‚‰å¤‰åŒ–検出ã®é€Ÿã•を予測ã™ã‚‹

Womelsdorf T, Fries P, Mitra PP, Desimone R (Nature, 2006)


Grouping does not require attention (1)
ç¾¤åŒ–ã¯æ³¨æ„ã‚’å¿…è¦ã¨ã—ãªã„

Lamy D, Segal H, Ruderman L (Percept Psychophys, 2006)


H

Hemodynamic signals correlate tightly with synchronized gamma oscillations (1)
ヘモグロビン動態ã¯åŒæœŸã—ãŸã‚¬ãƒ³ãƒžå¸¯åŸŸæŒ¯å‹•ã¨å¼·ã相関ã™ã‚‹

Niessing J, Ebisch B, Schmidt KE, Niessing M, Singer W, Galuske RA (Science, 2005)


How default is the default mode of brain function? Further evidence from intrinsic BOLD signal fluctuation (1)
脳機能ã®åŸºæœ¬ãƒ¢ãƒ¼ãƒ‰ã¨ã¯ã©ã†åŸºæœ¬çš„ãªã®ã‹ï¼Ÿå†…在的BOLDä¿¡å·ã®ã°ã‚‰ã¤ãã‹ã‚‰å¾—られãŸã•らãªã‚‹è¨¼æ‹ 

Fransson P (Neuropsychologia. 2006)


Human fMRI evidence for the neural correlates of preparatory set (1)
眼çƒé‹å‹•ã®æº–å‚™ã«é–¢ã™ã‚‹ç¥žçµŒåŸºç›¤ã®ãƒ’トfMRIã«ã‚ˆã‚‹çŸ¥è¦‹

Connolly JD, Goodale MA, Menon RS, Munoz DP (Nat Neurosci, 2002)


I

Increased sensitivity after repeated stimulation of residual spatial channels in blindsight (1)
Blindsightã§ã®å¼åˆ¥èƒ½ã¯åˆºæ¿€æç¤ºã®ç¹°ã‚Šè¿”ã—ã«ã‚ˆã£ã¦å‘上ã™ã‚‹

Sahraie A, Trevethan CT, MacLeod MJ, Murray AD, Olson JA, Weiskrantz L (PNAS, 2006)


L

Language control in the bilingual brain (1)
ãƒã‚¤ãƒªãƒ³ã‚¬ãƒ«ã®è„³ã«ãŠã‘る言語ã®èª¿ç¯€

Crinion J, Turner R, Grogan A, Hanakawa T, Noppeney U, Devlin JT, Aso T, Urayama S, Fukuyama H, Stockton K, Usui K, Green DW, Price CJ (Science, 2006)


Long-term motor cortex plasticity induced by an electronic neural implant (1)
電気的神経インプラントã«ã‚ˆã£ã¦å¼•ãèµ·ã“ã•れãŸé‹å‹•野ã®é•·æœŸçš„å¯å¡‘性

Jackson A, Mavoori J, Fetz EE (Nature, 2006)


M

Magnetic resonance imaging of freely moving objects: prospective real-time motion correction using an external optical motion tracking system (1)
自由ã«å‹•ã物体ã®MRIæ’®åƒï¼šå¤–部光学追跡システムを用ã„ãŸãƒªã‚¢ãƒ«ã‚¿ã‚¤ãƒ ä½“動補正

Zaitsev M, Dold C, Sakas G, Hennig J, Speck O (NeuroImage, 2006)


Mapping directed influence over the brain using Granger causality and fMRI (1)
グレンジャー因果性ã¨fMRIを用ã„ãŸè„³å…¨ä½“ã«ã‚ãŸã‚‹ç›´æŽ¥çš„ãªè³¦æ´»ã®å½±éŸ¿ã®ãƒžãƒƒãƒ”ング

Roebroeck A, Formisano E, Goebel R (NeuroImage, 2005)


Matching behavior and the representation of value in the parietal cortex (1)
é©åˆè¡Œå‹•ã¨é ­é ‚葉ã«ãŠã‘ã‚‹ãã®ä¾¡å€¤ã®è¡¨ç¾

Sugrue LP, Corrado GS, Newsome WT (Science, 2004)


Motion-induced blindness in normal observers (1)
å¥å¸¸è¦–覚者ã§èµ·ã“る「動ãã«ã‚ˆã£ã¦èª˜ç™ºã•れるä¸å¯è¦–ã€

Bonneh YS, Cooperman A, Sagi D (Nature, 2001)


N

Negative functional MRI response correlates with decreases in neuronal activity in monkey visual area V1 (1)
サルV1野ã«ãŠã„ã¦ãƒ‹ãƒ¥ãƒ¼ãƒ­ãƒ³æ´»å‹•ã®ä½Žä¸‹ã¨é™°æ€§fMRIä¿¡å·ã¯äº’ã„ã«ç›¸é–¢ã™ã‚‹

Shmuel A, Augath M, Oeltermann A, Logothetis NK (Nat Neurosci, 2006)


Neural correlates of change detection and change blindness (1)
å¤‰åŒ–ã®æ¤œå‡ºãƒ»è¦‹è½ã¨ã—ã®ç¥žçµŒåŸºç›¤

Beck DM, Rees G, Frith CD, Lavie N (Nat Neurosci, 2001)


Neurobiological substrates of dread (1)
「怖れã€ã®ç¥žçµŒåŸºç›¤

Berns GS, Chappelow J, Cekic M, Zink CF, Pagnoni G, Martin-Skurski ME (Science ,2006)


Neuronal correlates of perception in early visual cortex (1)
一次視覚野ã«ãŠã‘る知覚ç¾è±¡ã®ç¥žçµŒåŸºç›¤

Ress D, Heeger DJ (Nat Neurosci, 2003)


O

Objects are highlighted by spatial attention (1)
オブジェクトã¯ç©ºé–“çš„ãªæ³¨æ„ã«ã‚ˆã£ã¦å¼·èª¿ã•れる

Martinez A, Teder-Salejarvi W, Vazquez M, Molholm S, Foxe JJ, Javitt DC, Di Russo F, Worden MS, Hillyard SA (J Cogn Neurosci, 2006)


Orienting attention to locations in perceptual versus mental representations (1)
知覚表ç¾ãŠã‚ˆã³å†…的表ç¾ã«ãŠã‘る空間的ä½ç½®ã¸ã®æ³¨æ„ã®æŒ‡å‘

Nobre AC, Coull JT, Maquet P, Frith CD, Vandenberghe R, Mesulam MM (J Cogn Neurosci, 2004)


P

Perception’s shadow: long-distance synchronization of human brain activity (1)
知覚ã®å½±ï¼šãƒ’トã®è„³æ´»å‹•ã«ãŠã‘る広範囲ã®åŒæœŸç¾è±¡

Rodriguez E, George N, Lachaux JP, Martinerie J, Renault B, Varela FJ (Nature, 1999)


Perceptions of moral character modulate the neural systems of reward during the trust game (1)
信用ゲームã«ãŠã„ã¦å¾³æ€§ã¯å ±é…¬ã®ç¥žçµŒæ©Ÿæ§‹ã«å½±éŸ¿ã‚’åŠã¼ã™

Delgado MR, Frank RH, Phelps EA (Nat Neurosci, 2005)


Perceptual organization of tone sequences in the auditory cortex of awake macaques (1)
覚醒マカクザルã®è´è¦šé‡Žã«ãŠã‘る音階シーケンスã®çŸ¥è¦šæ©Ÿæ§‹

Micheyl C, Tian B, Carlyon RP, Rauschecker JP (Neuron, 2005)


Q

Quantitative Analysis of Attention and Detection Signals During Visual Search (1)
視覚探索ã«ãŠã‘る注æ„・検出信å·ã®å®šé‡çš„è§£æž

Shulman GL, McAvoy MP, Cowan MC, Astafiev SV, Tansy AP, d’Avossa G, Corbetta M (J Neurophysiol. 2003)


R

Representation of action-specific reward values in the striatum (1)
ç·šæ¡ä½“ã«ãŠã‘る「行動ã®ä¾¡å€¤ã€ã®è¡¨ç¾

Samejima K, Ueda Y, Doya K, Kimura M (Science, 2005)


S

Salience, relevance, and firing: a priority map for target selection (1)
顕著性ã€é–¢é€£æ€§ã€ãã—ã¦ç™ºç«ï¼šç›®æ¨™é¸æŠžã®ãŸã‚ã®å„ªå…ˆåº¦ãƒžãƒƒãƒ—

Fecteau JH, Munoz DP (Trends Cogn Sci. 2006)


Selection and maintenance of saccade goals in the human frontal eye fields (1)
ヒトå‰é ­çœ¼é‡Žã«ãŠã‘るサッカード(サッケード)目標ã®é¸æŠžã¨ä¿æŒ

Curtis CE, D’Esposito M (J Neurophysiol, 2006)


Spatial maps in frontal and prefrontal cortex (1)
å‰é ­è‘‰ãŠã‚ˆã³å‰é ­å‰é‡Žã«ãŠã‘る空間分布図

Hagler DJ Jr, Sereno MI (NeuroImage, 2006)


Spontaneous neuronal activity distinguishes human dorsal and ventral attention systems (1)
自発的ãªç¥žçµŒæ´»å‹•ã¯ãƒ’ト背å´ãƒ»è…¹å´æ³¨æ„システムをå¼åˆ¥ã™ã‚‹

Fox MD, Corbetta M, Snyder AZ, Vincent JL, Raichle ME (PNAS, 2006)


Stages of processing in face perception: an MEG study (1)
é¡”ã®çŸ¥è¦šã«ãŠã‘る段階的処ç†ï¼šMEGã«ã‚ˆã‚‹æ¤œè¨Ž

Liu J, Harris A, Kanwisher N (Nat Neurosci, 2002)


Sustained division of the attentional spotlight (1)
注æ„ã®ã‚¹ãƒãƒƒãƒˆãƒ©ã‚¤ãƒˆã®æŒç¶šçš„ãªåˆ†å‰²

Muller MM, Malinowski P, Gruber T, Hillyard SA (Nature, 2003)


T

The continuous wagon wheel illusion is associated with changes in electroencephalogram power at approximately 13 Hz (1)
æŒç¶šçš„ãªwagon-wheel錯視ã¯è„³æ³¢ã«ãŠã‘ã‚‹13Hzå‰å¾Œã®ãƒ‘ワーã®å¤‰åŒ–ã¨é–¢é€£ã™ã‚‹

VanRullen R, Reddy L, Koch C (J Neurosci, 2006)


The Neural Mechanisms Underlying the Muller-Lyer Illusion And Its Interaction with Visuospatial Judgments (1)
ミューラー・リヤー錯視ã®ç¥žçµŒãƒ¡ã‚«ãƒ‹ã‚ºãƒ ãŠã‚ˆã³ãã®è¦–空間的判別ã¨ã®é–“ã®ç›¸é–¢

Weidner R, Fink GR (Cereb Cortex, 2006)


The orienting of visuospatial attention: an event-related brain potential study (1)
視空間的注æ„ã®æŒ‡å‘:事象関連電ä½ã«ã‚ˆã‚‹ç ”ç©¶

Talsma D, Slagter HA, Nieuwenhuis S, Hage J, Kok A (Brain Res Cogn Brain Res, 2005)


The precuneus: a review of its functional anatomy and behavioural correlates (1)
楔å‰éƒ¨ï¼šæ©Ÿèƒ½è§£å‰–学的知見ã¨è¡Œå‹•ã¨ã®ç›¸é–¢ã®æ¦‚説

Cavanna AE, Trimble MR (Brain, 2006)


The representation of perceived angular size in human primary visual cortex (1)
ヒト一次視覚野ã«ãŠã‘る知覚ã•れãŸè¦–野角ã®è¡¨ç¾

Murray SO, Boyaci H, Kersten D (Nat Neurosci, 2006)


The Sightless View: Neural Correlates of Occluded Objects (1)
隠れã¦ã„ãã‚‚ã®ã‚’見続ã‘ã‚‹ã¨ã„ã†ã“ã¨ï¼šéš è”½ã•れãŸã‚ªãƒ–ジェクトã®èªçŸ¥ã®ç¥žçµŒç›¸é–¢

Hulme OJ, Zeki S (Cereb Cortex. 2007)


The spatial distribution of attention during covert visual orienting (1)
固視状æ³ä¸‹ã«ãŠã‘る視覚的注æ„ã®æŒ‡å‘ã®ç©ºé–“的分布

McCormick PA, Klein R (Acta Psychol (Amst), 1990)


Topographic maps of visual spatial attention in human parietal cortex (1)
ヒト頭頂葉ã«ãŠã‘る視空間的注æ„ã®åœ°å½¢å›³çš„分布図

Silver MA, Ress D, Heeger DJ (J Neurophysiol, 2005)


Topographic studies on visual neurons in the dorsolateral prefrontal cortex of the monkey (1)
サル背外å´å‰é ­å‰é‡Žã«ãŠã‘る視覚å応性ニューロンã®åœ°å½¢å›³çš„研究

Suzuki H, Azuma M (Exp Brain Res, 1983)


U

Unconscious vision: new insights into the neuronal correlate of blindsight using diffusion tractography (1)
ç„¡æ„è­˜ã®è¦–覚:盲視ã®ç¥žçµŒç›¸é–¢ã«å¯¾ã™ã‚‹æ‹¡æ•£å¼·èª¿MRIを用ã„ãŸæ–°ãŸãªæ´žå¯Ÿ

Leh SE, Johansen-Berg H, Ptito A (Brain, 2006)


V

Visual attention: insights from brain imaging (1)
視覚的注æ„:脳機能画åƒã«ã‚ˆã‚‹æ´žå¯Ÿ

Kanwisher N, Wojciulik E (Nat Rev Neurosci, 2000)


Visual mental imagery induces retinotopically organized activation of early visual areas (1)
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Slotnick SD, Thompson WL, Kosslyn SM (Cereb Cortex, 2005)


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Why are antisaccades slower than prosaccades? A novel finding using a new paradigm (1)
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Olk B, Kingstone A (NeuroReport, 2003)


Why visual attention and awareness are different (1)
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Lamme VA (Trends Cogn Sci, 2003)


Wide-field retinotopy defines human cortical visual area V6 (1)
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Pitzalis S, Galletti C, Huang RS, Patria F, Committeri G, Galati G, Fattori P, Sereno MI (J Neurosci, 2006)


Wide-field retinotopy defines human cortical visual area V6 (1)
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Pitzalis S, Galletti C, Huang RS, Patria F, Committeri G, Galati G, Fattori P, Sereno MI (J Neurosci. 2006)


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Zap! Magnetic tricks on conscious and unconscious vision (1)
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Lamme VA (Trends Cogn. Sci., 2006)
Boyer JL, Harrison S, Ro T (Proc. Natl. Acad. Sci. USA, 2005)