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AugmentedrealityforDIEPflapharvest1418abdominismusclesarecreatedPatientsarenotexposedtoadditionalradiationbecauseacomputedtomographicangiographispartofthestandardprotocolforDIEPflapbreastreconstructionpatientsinourclinicIMPORT THEANATOMYMODEL TO THEHOLOLENSAPPLICATIONTheHoloLens(version1)isawirelesshead-mounteddisplaythatcangenerateaugmentedrealitybyshowinghologramsinthespacearoundtheuserWhereasthehologramsstayonthesamelocationintheroomtheusercanmovearoundtoappreciatethesefromdifferentperspectivesByusingtheUnityframework(v567;UnityTechnologiesSanFranciscoCalif.)anapplicationfortheHoloLenswasdevelopedtovisualizethe3DmodelsashologramsinthepatientThepreviouslysegmented3DmodelsarewirelesslytransferredtotheHoloLensusingthein-house–developedapplication(Figure2)Figure2HoloLensaugmentedrealityapplicationloadingscreenseenfromtheuserperspectivePATIENT TRACKINGA5×5-cmquickresponsemarkerisattachedtotheskinabovethenavelofthepatientTheHoloLensrecognizesandtracksthelocationandorientationofthisquickresponsemarker with thebuilt-inred green andblue camera and the Vuforiaaugmentedrealitytoolkit(v71;PTCIncBostonMass)(Figure3)Trackingthequickresponsemarkerensuresthattheholographicanatomyremainscorrectlypositionedinthenextstepoftheworkflow