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Assessment of the influence of navigation control and screen size on the sense of presence in virtual reality using EEG

Clemente Bellido, Miriam,Rodríguez Ortega, Alejandro,Rey, Beatriz,Alcañiz Raya, Mariano Luis

Abstract

[EN] In the virtual reality field, presence refers to the sense of being there in the virtual world. Our aim in this work is to evaluate the usefulness of the Emotiv EPOC EEG device to measure brain activations due to the sense of presence in a virtual environment (VE), using for the analysis the sLORETA tool. We compare between three experimental conditions: photographs, video and free navigation through a VE. We also compare the differences in the sense of presence due to the visualization of the VE in different screens: a common desktop screen and a high-resolution power wall screen. We monitored 20 healthy subjects, obtaining significant differences between the navigation and video conditions in the activity of the right Insula for the Theta band. We also found a higher activation of the Insula for the Alpha and Theta bands while navigating, when comparing the two screen types. The Insula activation is related to stimulus attention and self-awareness processes, directly related with the sense of presence.

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Documen downloaded om: This pape mus be ci ed as: The inal publica ion is a ailable a Copy igh Addi ional In o ma ion h p://dx.doi.o g/10.1016/j.eswa.2013.08.055 h p://hdl.handle.ne /10251/79568 Else ie Clemen e Bellido, M.; Rod iguez O ega, A.; Rey, B.; Alcañiz Raya, ML. (2014). Assessmen o he in luence o na iga ion con ol and sc een size on he sense o p esence in i ual eali y using EEG. Expe Sys ems wi h Applica ions. 41(4):1584-1592. doi:10.1016/j.eswa.2013.08.055. Accep ed Manusc ip Assessmen o he in luence o na iga ion con ol and sc een size on he sense o p esence in i ual eali y using EEG Mi iam Clemen e, Alejand o Rod íguez, Bea iz Rey, Ma iano Alcañiz PII: S0957-4174(13)00676-3 DOI: h p://dx.doi.o g/10.1016/j.eswa.2013.08.055 Re e ence: ESWA 8859 To appea in: Expe Sys ems wi h Applica ions Please ci e his a icle as: Clemen e, M., Rod íguez, A., Rey, B., Alcañiz, M., Assessmen o he in luence o na iga ion con ol and sc een size on he sense o p esence in i ual eali y using EEG, Expe Sys ems wi h Applica ions (2013), doi: h p://dx.doi.o g/10.1016/j.eswa.2013.08.055 This is a PDF ile o an unedi ed manusc ip ha has been accep ed o publica ion. As a se ice o ou cus ome s we a e p o iding his ea ly e sion o he manusc ip . The manusc ip will unde go copyedi ing, ypese ing, and e iew o he esul ing p oo be o e i is published in i s inal o m. Please no e ha du ing he p oduc ion p ocess e o s may be disco e ed which could a ec he con en , and all legal disclaime s ha apply o he jou nal pe ain. Assessmen o he in luence o na iga ion con ol and sc een size on he sense o p esence in i ual eali y using EEG Mi iam CLEMENTE1,*, Alejand o RODRÍGUEZ1, Bea iz REY1,2 and Ma iano ALCAÑIZ1,2 1 Uni e sidad Poli écnica de Valencia, I3BH/LabHuman, Valencia, Spain 2 Cibe , Fisiopa ología Obesidad y Nu ición, CB06/03 Ins i u o de Salud Ca los III, Spain Co esponding au ho : Mi iam Clemen e Ins i u o In e uni e si a io de In es igación en Bioingenie ía y Tecnología O ien ada al Se Humano, Uni e si a Poli ècnica de València I3BH/LabHuman, Camino Ve a s/n, 46022, Valencia (Spain) E-mail: mclemen [email protected] Tel.: 0034-963877518 Abs ac : In he Vi ual Reali y ield, p esence e e s o he sense o “being he e” in he i ual wo ld. Ou aim in his wo k is o e alua e he use ulness o he Emo i EPOC EEG de ice o measu e b ain ac i a ions due o he sense o p esence in a Vi ual En i onmen (VE), using o he analysis he sLORETA ool. We compa e be ween h ee expe imen al condi ions: pho og aphs, ideo and ee na iga ion h ough a VE. We also compa e he di e ences in he sense o p esence due o he isualiza ion o he VE in di e en sc eens: a common desk op sc een and a high- esolu ion powe wall sc een. We moni o ed 20 heal hy subjec s, ob aining signi ican di e ences be ween he na iga ion and ideo condi ions in he ac i i y o he igh insula o he The a band. We also ound a highe ac i a ion o he insula o he Alpha and The a bands while na iga ing, when compa ing he wo sc een ypes. The insula ac i a ion is ela ed o s imulus a en ion and sel -awa eness p ocesses, di ec ly ela ed wi h he sense o p esence. Keywo ds: EEG, Emo i EPOC, p esence, i ual eali y, na iga ion, sc een size 1. In oduc ion In he Vi ual Reali y (VR) ield, p esence e e s o he eeling o being he e, inside he Vi ual En i onmen (VE), while you body is physically loca ed elsewhe e (She idan, 1992). This concep is undamen al o he success o he i ual expe ience, de e mining he in e ac ion be ween he compu e - gene a ed wo ld and he subjec . In wo ds o Meehan e al. (2002), “ i ual en i onmen s a e he mos sophis ica ed human-compu e in e aces ye de eloped”. In his s udy, ou main pu pose is o measu e he le el o p esence expe ienced while na iga ing h ough a i ual en i onmen , in compa ison wi h o he less imme si e condi ions, using a wi eless po able elec oencephalog am (EEG) de ice as an objec i e indica o o b ain ac i a ion. Acco ding o Ri a e al. (2003), “as media becomes inc easingly in e ac i e, pe cep ually ealis ic and imme si e, he expe ience o p esence becomes mo e ealis ic”. So we expec o ind a highe sense o p esence while na iga ing han while pe o ming o he less imme si e condi ions, in which he in e ac ion wi h he en i onmen is mo e es ic ed. Fo he measu e o b ain ac i a ions, we will use an Emo i EPOC headse wi h which we expec o achie e ac i a ions in conco dance wi h hose ob ained in p e ious s udies ca ied ou wi h mo e p ecise and expensi e de ices. The use o a wi eless po able EEG de ice will allow a quicke placemen o he senso s and a highe deg ee o mo emen in he subjec , hus a o ing a highe le el o p esence du ing he expe ience. As Loomis (1992) ema ked, “p esence is a undamen al p ope y o consciousness”. Sanchez-Vi es and Sla e (2005) also poin ed ou ha inside he i ual expe ience, you a e a he same ime conscious o he “place” and he “e en s” and simul aneously conscious o ha he e a e no such place o e en s; howe e , you s ill beha e and hink as i he place we e eal and he e en s we e happening. As you consciousness o he di e ences be ween he eal and i ual place and e en s blu s, he ba ie be ween you mind and he VE diminishes, imp o ing you in e ac ion wi h he compu e -gene a ed wo ld. As Kobe e al. (2012) ema ked, he g ea e he deg ee o p esence he pa icipan s eel, he g ea e he chance hey will beha e in he VE as hey would do in a simila eal wo ld se ing. This ag ees wi h he iew o p esence as no only he sense o “being he e”, bu also he abili y o “do he e” (Sanchez-Vi es and Sla e , 2005). Ano he pu pose o he p esen s udy is o e alua e he in luence ha he isualiza ion sys em has o e he le el o p esence in he di e en in e ac ion condi ions. The e a e p e ious s udies ha ha e analyzed changes in he eeling o p esence due o he size and ealism o he sc een used o display he en i onmen . Fo example, Kobe e al. (2012) compa ed he p esence elici ed by wo isualiza ion sys ems: one based on a high-imme si e VR wall (3D) and ano he based on a low-imme si e 2D desk op sc een. Simila ly o his, in he p esen wo k we di ided he subjec s in o wo g oups, based on he kind o sc een used: he i s g oup pe o med he ask in a common desk op sc een (DS) and he second g oup iewed he en i onmen s in a high- esolu ion powe wall sc een (PW). Acco ding o he p e ious li e a u e, we expec o ind a highe s imula ion o he sense o p esence in he PW g oup han in he DS g oup. Fo he assessmen o he sense o p esence, we need a measu e eliable, alid, sensi i e, and objec i e (Meehan e al., 2002). The adi ional me hods used ques ionnai es o his pu pose, ob aining alid ye subjec i e esul s. Since he es s a e ca ied ou a e he i ual expe ience, hey do no p o ide in o ma ion o he empo al e olu ion and a e in luenced by he subjec ’s opinion. This can be obse ed, o example, in he s udy om Usoh e al. (2000), who used ques ionnai es o dis inguish be ween he sense o p esence expe ienced while pe o ming a ask in he eal wo ld and inside a i ual en i onmen . They passed di e en ques ionnai es o he subjec s a e bo h expe iences, ob aining only a ma ginally highe p esence a e in he eal scene. Ano he way o e alua ing p esence is he use o physiological measu es, aken du ing he i ual expe ience and no a he end o i , so hey can be used as eal ime moni o ing du ing he ask. Be ween he measu es a ailable, we can ema k echniques such as hea a e, skin conduc ance, eye mo emen o su ace elec omyog aphy. Fo example, Meehan e al. (2002) used hea a e, skin conduc ance and skin empe a u e o he measu e o p esence in a s ess ul i ual en i onmen . Thei hypo hesis was ha he mo e eal he en i onmen seemed, he g ea e sense o p esence he subjec would eel. They concluded ha he bes assessmen o he p esence expe ience was ob ained wi h he hea a e esponse. Apa om pe iphe al physiological measu es, di e en neu oimagen echniques ha e been p oposed and used o he assessmen o he sense o p esence inside a i ual en i onmen , such as unc ional magne ic esonance imaging ( MRI), T ansc anial Dopple (TCD) o elec oencephalog aphy (EEG). Rega ding MRI, Baumga ne e al. (2008) analyzed b ain ac i a ions associa ed wi h p esence in child en and adul s while wa ching a VR ideo o an au oma ic na iga ion in a olle coas e scena io. They compa ed he di e ences be ween a high p esence and a low p esence en i onmen . Resul s om he MRI analysis showed ha he p esence expe ience e oked by he i ual olle coas e scena io was associa ed wi h an inc ease in ac i a ion in a dis ibu ed ne wo k. As discussed la e by Jäncke e al. (2009), he dis ibu ed ne wo k ha is ac i a ed du ing he p esence expe ience includes he do sal and en al isual s eam, he pa ie al co ex, he p emo o co ex, he mesial empo al a eas (including he hippocampus, amygdala and insula), he b ains em and he halamus. In a p e ious s udy ca ied ou by ou g oup (Clemen e e al., in p ess), MRI was also used o he measu e o p esence in a i ual en i onmen , compa ing h ee expe imen al condi ions: pho og aphs, ideos and ee na iga ion h ough he en i onmen . We ound signi ican di e ences in he le el o p esence expe ienced while na iga ing compa ed wi h he o he wo condi ions, mos ly in he insula, he cuneus and he pa ie al lobe. Wi h ega d o TCD, wo ecen s udies (Alcañiz e al., 2009; Rey e al., 2010) p oposed ha TCD could be used as a b ain ac i i y measu emen echnique o s udy p esence in i ual en i onmen s. Resul s o hese wo s udies showed changes in blood low eloci y in he majo ce eb al a e ies o he pa icipan s du ing momen s associa ed wi h di e en le els o p esence in di e en imme si e and na iga ional condi ions. The o he echnique ha has been p oposed and applied o p esence measu emen is he elec oencephalog aphy (EEG), due o he eedom o mo emen he subjec has once he elec odes a e placed, especially in compa ison wi h echniques ha impose se e e es ic ions o mo emen s such as MRI. EEG measu es he elec ic ac i i y in he b ain; mo e speci ically, i measu es he synap ic po en ials in he ce eb al co ex. EEG signals show he di e ence in po en ial be ween wo elec odes, an ac i e one and a e e ence one. The ime esolu ion o he echnique is o he o de o milliseconds, allowing he measu e o he luc ua ions in he EEG signal due o he asks de eloped. Un il now, se e al s udies ha e been made combining VR wi h EEG o measu e he sense o p esence expe ienced by he subjec s. Fo example, Baumga ne e al. (2006) e alua ed he ce eb al ac i i y ela ed o he sense o p esence using a mul ichannel EEG, applying he low- esolu ion b ain elec omagne ic omog aphy (LORETA) me hod o s udy he co ical s uc u es ha p oduce he neu ophysiologic ac i a ion. They compa ed ac i a ions be ween child en and adolescen s while iewing a ideo o a olling coas e , and ound ac i a ion in he pa ie al a eas o he b ain. Mo e ecen ly, o he s udies we e de eloped in in e ac i e en i onmen s whe e he na iga ion h ough he i ual en i onmen s was allowed, in o de o inc ease he sense o “being he e”. In he p e iously men ioned s udy om Kobe e al. (2012), which compa ed wo sys ems o he p esen a ion o he i ual s imuli, one based on a high-imme si e VR wall (3D) and ano he based on a low-imme si e 2D desk op sc een, i was obse ed ha he 3D sc een sys em showed a g ea e p esence sense associa ed wi h an inc ease in he Alpha band o he pa ie al TRPD (“Task- ela ed powe dec ease”), ela ed o he pa ie al ac i a ions. The lowe p esence expe ience in he 2D sc een was accompanied by a s ong unc ional connec i i y be ween he on al and pa ie al a eas o he b ain, poin ing ou ha he communica ion be ween hose a eas is c ucial o he expe ience o p esence. In ano he s udy which ollowed a di e en EEG-based app oach o he e alua ion o p esence, Kobe and Neupe (2012) s udied he E en -Rela ed b ain Po en ials (ERP) o he EEG signal, which we e elici ed by ones ha we e no ela ed wi h he VR expe ience. They ound a co ela ion be ween he inc ease in he p esence expe ience and he dec ease in he la e nega i e slow wa e ampli udes, ela ed o he cen al s imulus p ocessing and he alloca ion o he a en ional esou ces. Acco ding o his conclusion, an inc ease in p esence is ela ed o a g ea e pay o a en ion o he i ual en i onmen , which leads o a dec ease in he a en ion paid o he i ele an s imulus o he VR (dec ease in he ERP componen s due o he ones). Recen ly, se e al s udies ha e been ca ied ou using he Emo i EPOC headse , ying o demons a e i s use ulness and p ac ical applica ions. Gi en i s po abili y and i s low-cos in compa ison wi h o he EEG de ices, i is widely being used (especially in BCI applica ions) due o i s high empo al esolu ion compa ed o o he non-in asi e echniques such as MEG, MRI o he adi ional EEG (Du inage e al., 2012). Fo example, Campbell e al. (2010) used i as an in e ace o communica e he b ain wi h a mobile phone applica ion, in o de o command i jus wi h men al o de s. Mo e p ecisely, in his s udy he e appea a sequence o pho os o con ac s in he phone and when he showed pho o ma ches ha o he con ac he use wan s o dial, a P300 b ain po en ial is elici ed. In ano he s udy, Khushaba e al. (2012) explo ed he b ain ac i a ions elici ed while pe o ming a ask whe e decision making is in ol ed. They used an Emo i EPOC headse o measu e he b ain ac i i y, as well as a Tobii-S udio eye acke sys em o cap u e he pa icipan s’ choice based on hei p e e ence in looking a . In a pos e io s udy, he same g oup (Khushaba e al., 2013) explo ed he comme cial applica ions o his decision making measu es o he guidance o choose he ma ke ing ha be e i s he consume p e e ences. In his conc e e s udy, hey used again he Emo i EPOC headse o measu e b ain ac i i y while pe o ming a choice ask o choose among he use ’s p e e ed shape, la o and opping in biscui s. The Emo i e EPOC has also been applied o e alua e b ain ac i a ions ela ed o emo ional induc ion. In he s udy om Rod íguez e al. (2013a), i ual en i onmen s we e used o p o oke a nega i e mood (sadness) in he subjec s while hei b ain ac i a ion was measu ed be o e and a e he nega i e induc ion by means o an Emo i EPOC headse . In ano he s udy (Rod íguez e al., 2013b), hey also applied his low-cos EEG de ice, o moni o b ain ac i i y du ing a posi i e emo ional induc ion ( iew o alida ed images om he IAPS sys em). Taking in o accoun all his p e ious esea ch, and since he in luence o use -con olled na iga ion on he p esence expe ience and on he associa ed b ain ac i a ions has no been di ec ly e alua ed ye , he main goal o he p esen s udy will be o compa e b ain ac i i y due o p esence be ween h ee expe imen al condi ions associa ed wi h di e en le els o na iga ion con ol: he iew o s ill pho og aphs o he i ual en i onmen , he iew o a ideo o an au oma ic na iga ion h ough he en i onmen and a ee na iga ion h ough he VE. We expec ha he sense o p esence will be g ea e in he na iga ion condi ion han in he o he wo condi ions, and ha he e will be di e ences in b ain ac i a ion in a eas ela ed o p esence. Mo eo e , we will compa e he b ain ac i a ions due o di e ence in p esence depending on he sc een used o he isualiza ion o he en i onmen s. We expec ha he mo e imme si e and ealis ic sc een will gene a e a highe sense o p esence. 2. Ma e ial and Me hods 2.1. Subjec s Fo he s udy, 20 heal hy subjec s we e ec ui ed; being di ided in o wo g oups o 10 subjec s each. The i s g oup iewed he VR en i onmen s by means o a common desk op sc een (DS), while he second g oup iewed he en i onmen s on a Powe Wall (PW) sc een. Fo he i s g oup (DS), 6 men and 4 women we e e alua ed, wi h ages be ween 22-29 yea s old. Fo he second g oup (PW), 5 men and 5 women ca ied ou he s udy, wi h ages be ween 21 and 29 yea s old. All he subjec s we e igh -handed. The pa icipan s’ hand dominance was es ed using he Edinbu gh Handedness In en o y (Old ield, 1971). All o hem p o ided signed consen o allowing hei da a being used in his s udy. One subjec (a woman) om he DS g oup had o be excluded due o mo emen du ing he scan. The expe imen s we e conduc ed in a labo a o y inside he LabHuman g oup. The EEG signal was moni o ed by means o a mul ichannel wi eless po able EEG de ice (Emo i EPOC) (Rey e al., 2012), which has 14 da a- collec ing elec odes and 2 e e ence ones. The handse ansmi s wi elessly he EEG da a o he compu e . 2.2. P esence Ques ionnai e A e he EEG session, subjec s had o answe he ques ions o a SUS ques ionnai e (Usoh e al., 2000) o e alua e he le el o p esence ha hey el du ing each ask (one ques ionnai e o each expe imen al condi ion). The ques ionnai e consis ed in six 7-poin Like ype ques ions ha had o be answe ed depending on he s eng h o he “being he e” sensa ion expe ienced, whe e 1 co esponded o no eeling he e a all and 7 o he highes sense o being he e (as expe ienced in he eal wo ld). 2.3. En i onmen s The i ual en i onmen s we e p og ammed using GameS udio so wa e (Coni ec Da ensys eme GmbH, Ge many), which allowed us o de elop 3D objec s and i ual wo lds wi h which we could in e ac and na iga e. Ou i ual en i onmen (VE) consis ed o an e e yday, clean bed oom (wi h a bed, a close , and a desk wi h some books on i ) whe e pa icipan s could na iga e eely. To allow us o iden i y he speci ic a eas o he b ain ha we e ac i a ed o each ask, we di ided he pa adigm in o h ee condi ions de eloped wi h he same i ual en i onmen : in he i s , pho og aphs o he en i onmen we e shown; in he second, a ideo o an au oma ic na iga ion h ough he oom is obse ed; in he hi d, he pa icipan can na iga e eely in he VE. A scheme o he p o ocol can be seen in Figu e 1. Figu e 1. Diag am o he expe imen al design. In he bo om pa o he image, he scheme o he p o ocol ollowed in he expe imen is shown. Abo e i , i can be obse ed a cap u e o he en i onmen . Each condi ion was epea ed six imes. To lea n abou he asks ha had o be pe o med inside he scanne oom, subjec s unde wen a p io aining session. In o de o p e en di e ences in ac i a ion caused by he mo o ask, subjec s we e ins uc ed o mo e he joys ick con inuously du ing he pho og aphs and ideo asks in he same way as hey did du ing he na iga ion pe iod. 2.4. Da a Analysis We analyzed he esul s o he SUS ques ionnai es using he p og am SPSS 17.0 (IBM Co po a ion, Some s, New Yo k, USA). Apa om he indi idual esponses o he six ques ions associa ed wi h each o he pe iods (pho og aphs, ideo and na iga ion), we calcula ed an addi ional measu emen : SUS mean. This is he mean sco e ac oss he six ques ions ha has al eady been desc ibed in p e ious s udies (Usoh e al., 2000). We ca ied ou a non-pa ame ic F iedman Tes o compa e SUS esponses (dependen a iables: ques ions 1-6 and SUS mean) o he di e en expe imen al condi ions: pho og aphs, ideo and na iga ion. Pos -hoc es s we e made wi h a Wilcoxon Signed-Rank es wi h Bon e oni co ec ion. The p ep ocessing o he signals was made by means o he EEGLAB p og am (Delo me and Makeig, 2004). All eco ded EEG epochs we e checked o a i ac s. Fi s o all, da a we e digi ally il e ed using a linea FIR band pass il e (0.5-45 Hz). Then, he elec ooculog aphic (EOG) a i ac s we e emo ed applying Blind Sou ce Sepa a ion (BSS), using a window leng h o 10s, wi h 5s be ween windows. The elec omyog aphic (EMG) a i ac s we e emo ed using also he BSS me hod. Fo he analysis o he ac i a ed b ain a eas, he sLORETA (s anda dized low- esolu ion elec omagne ic omog aphy) ool was used (Pascual-Ma qui e al., 1994, 1999; Pascual-Ma qui, 1999; F ei e al., 2001). The whole b ain was analyzed using oxel-wise - es s o examining he na iga ion s. ideo and na iga ion s. pho og aphs condi ions in he six equency bands. Mo eo e , he same oxel-wise - es s we e used o compa ing be ween he na iga ion condi ions o he wo g oups (DS s. PW) in he six equency bands. 3. Resul s 3.1. Ques ionnai e Resul s The answe s o he SUS ques ionnai e showed be ween subjec a ia ions. Mean alues in each condi ion a e shown in Table 1. Resul s om applying he non-pa ame ic F iedman Tes showed ha he e we e signi ican di e ences be ween he h ee expe imen al condi ions o all he ques ions and he SUS mean ( esul s can be obse ed in Table 1, columns 5 and 6). I we obse e he esul s o each ques ion, we can see ha o he DS g oup, he g ea es Chi-squa e alue (χ2 = 16.222, p < 0.001) was obse ed o ques ions 1 and SUS mean; while o he PW g oup, he g ea es Chi-squa e alue (χ2 = 13.556, p < 0.001) was obse ed o ques ions 1 and 3. Pos -hoc analyses based on Wilcoxon Signed-Rank Tes s we e conduc ed on he SUS mean esul s wi h Bon e oni co ec ion, esul ing in a signi icance le el se a p < 0.0167. Fo he DS g oup, he e we e no signi ican di e ences be ween he pho og aph and ideo asks (Z=2.082, p=0.037>0.0167), bu he e we e o he compa isons na iga ion s. ideo (Z=2.668, p=0.008<0.0167) and na iga ion s. pho og aph (Z=2.668, p=0.008<0.0167). Fo he PW g oup, he e we e no signi ican di e ences be ween he pho og aph and he ideo asks (Z =2.380, p = 0.017 > 0.0167) and be ween he pho og aphs and na iga ion asks (Z=2.366, p=0.018>0.0167). Howe e , he e was a s a is ically signi ican inc emen in he SUS mean in he na iga ion condi ion compa ed wi h he ideo condi ion (Z =2.521, p = 0.012 < 0.0167). Those esul s a e con ained in Table 2. Finally, we should men ion ha no signi ican di e ence was ound o he ques ionnai e answe s be ween g oups (DS s. PW) o any o he h ee expe imen al condi ions. Table 1. SUS esponses o ques ionnai es o each ask (mean sco e and s anda d e o o he mean) and esul s o he F iedman Tes o each ques ion and he mean sco e Pho og aph Video Na iga ion χ2 P DS 1.89±0.35 3.11±0.31 4.89±0.39 16.222 0.000 SUS ques ion 1: eeling o “being he e” PW 2.90±0.33 3.80±0.26 4.80±0.41 13.556 0.001 DS 2.22±0.43 3.00±0.33 4.78±0.40 12.400 0.002 SUS ques ion 2: eeling ha he oom is eal PW 2.40±0.23 3.70±0.35 4.30±0.39 12.286 0.002 DS 1.56±0.24 2.67±0.24 4.11±0.39 15.548 0.000 SUS ques ion 3: how eal do you emembe he oom? PW 2.20±0.34 3.40±0.32 4.50±0.39 13.556 0.001 DS 2.00±0.37 2.89±0.51 4.78±0.49 14.813 0.001 SUS ques ion 4: eeling o being inside he oom o obse ing i PW 2.50±0.28 3.40±0.28 4.80±0.44 12.600 0.002 DS 2.89±0.42 2.89±0.39 3.78±0.49 10.800 0.005 SUS ques ion 5: memo y o he oom as simila o being in o he places PW 2.90±0.46 3.70±0.32 4.70±0.39 9.680 0.008 DS 2.33±0.37 3.22±0.28 4.78±0.47 9.800 0.007 SUS ques ion 6: did you hink you we e eally in he oom? PW 2.60±0.48 3.40±0.36 4.40±0.48 10.000 0.007 DS 2.15±0.28 2.96±0.24 4.52±0.35 16.222 0.000 SUS mean PW 2.58±0.27 3.57±0.23 4.59±0.36 12.839 0.002 Table 2. Resul s o he Wilcoxon Signed-Rank Tes o he compa ison o he SUS mean esul s be ween expe imen al condi ions DS PW SUS mean Z P Z P Na iga ion>Video 2.668 0.008 2.521 0.012 Na iga ion>Pho og aphs 2.668 0.008 2.366 0.018 Video>Pho og aphs 2.082 0.037 2.380 0.017 3.2. EEG Resul s Fo he DS g oup, he compa ison be ween he Na iga ion and Video condi ions using oxel-wise - es o all he equency bands e ealed signi ican di e ences in he Alpha-band (8-12 Hz) and The a-band (4-7 Hz), o p<0.05. Alpha and The a band powe was dec eased in he Na iga ion condi ion in he igh Insula (BA 13), indica ing inc eased ac i i y in his egion du ing he ee na iga ion ask. Figu e 2. Resul s o he Na iga ion> ideo con as o bo h expe imen al g oups. Cap u es o sLORETA ac i a ion o he na iga ion> ideo con as in he The a band o : a) DS g oup, b) PW g oup Fo he PW g oup, he same compa ison be ween he Na iga ion and Video condi ions, again using oxel-wise - es o all equency bands, e ealed signi ican di e ences in he The a-band (4-7 Hz), o p<0.05. The a band powe was dec eased in he Na iga ion condi ion in he igh Insula (BA 13), indica ing inc eased ac i i y in his egion du ing he ee na iga ion ask. The e has been also ound a end (p<0.1) o inc eased ac i i y in he Insula (BA 13) and in he Pa ie al Lobe (BA 40) o he Alpha- band. A compa ison be ween he esul s o he na iga ion> ideo con as in he he a band can be seen in Figu e 2. All he esul s o his con as a e con ained in Table 3. Table 3. Compa ison o he esul s o he DS and PW g oups o he na iga ion> ideo con as G oup B ain A ea Band Hemisphe e p DS Sub-Loba , Insula (BA13) The a Righ <0.05 DS Sub-Loba , Insula (BA13) Alpha Righ <0.05 PW Sub-Loba , Insula (BA13) The a Righ <0.05 PW Pa ie al Lobe, In e io Pa ie al Lobule (BA40, 39, 7) Alpha Righ <0.1 PW Pa ie al Lobe, P ecuneus (BA19) Alpha Righ <0.1 PW Pa ie al Lobe, Angula Gy us (BA39) Alpha Righ <0.1 PW Pa ie al Lobe, Supe io Pa ie al Lobule (BA7) Alpha Righ <0.1 PW Sub-Loba , Insula (BA13) Alpha Righ <0.1 Rega ding he esul s o he compa ison be ween he condi ions o Na iga ion and Pho og aphs, we did no ound any signi ican esul s o any g oup, bu we ound se e al a eas wi h endency o signi icance in he PW g oup. Fo he Alpha band, he DS g oup p esen ed a end o ac i a ion o p>0.1 in se e al on al and empo al a eas, as well as in he pa ahippocampal gy us. Fo he PW g oup, also in he Alpha band, we ound he majo signi icance esul in he Uncus o he pa ahippocampal gy us, pa o he Limbic Lobe; and endency o signi icance in o he a eas o he empo al and on al a eas. The comple e esul s o his con as a e con ained in Table 4. Table 4. Compa ison o he esul s o he DS and PW g oups o he na iga ion>pho og aphs con as G oup B ain A ea Band Hemisphe e p DS Sub-Loba , Insula (BA13) Alpha Righ >0.1 DS F on al Lobe, Subcallosal Gy us (BA34, 13) Alpha Righ >0.1 DS F on al Lobe, In e io F on al Gy us (BA47, 13, 11) Alpha Righ >0.1 DS F on al Lobe, O bi al Gy us (BA47) Alpha Righ >0.1 DS F on al Lobe, Middle F on al Gy us (BA11) Alpha Righ >0.1 DS F on al Lobe, Medial F on al Gy us (BA25) Alpha Righ >0.1 DS Limbic Lobe, Uncus (BA20, 28, 34) Alpha Righ >0.1 Radua, J., Phillips, M.L., Russell, T., Law ence, N., Ma shall, N., Kalidindi, S., El-Hage, W., McDonald, Colm e al. (2010). 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Highligh s > We analyzed he sense o p esence expe ienced in a i ual en i onmen using EEG. > F ee na iga ion in a i ual en i onmen was compa ed wi h ideo and pho og aphs. > We compa ed he esul s ob ained using wo di e en sc eens. > A common Desk op sc een and a high- esolu ion powe wall sc een we e compa ed. > We used an Emo i EPOC headse , ob aining ac i a ion mainly in he Insula.