A consensus protocol for functional connectivity analysis in the rat brain.
Joanes GrandjeanGabriel Desrosiers-GregoireCynthia AnckaertsDiego Angeles-ValdezFadi AyadDavid André BarrièreInes BlockxAleksandra BortelMargaret BroadwaterBeatriz M CardosoMarina CélestineJorge E Chavez-NegreteSangcheon ChoiEmma ChristiaenPerrin ClavijoLuis M Colon-PerezSamuel CramerTolomeo DanieleElaine DempseyYujian DiaoArno DoelemeyerDavid DopfelLenka DvořákováClaudia Falfán-MelgozaFrancisca F FernandesCaitlin F FowlerAntonio Fuentes-IbañezClément M GarinEveline GeldermanCarla E M GoldenChao Ciu-Gwok GuoMarloes J A G HenckensLauren A HennessyPeter HermanNita HofwijksCorey HorienTudor M IonescuJolyon JonesJohannes KaesserEugene KimHenriette LambersAlberto LazariSung-Ho LeeAmanda LillywhiteYikang LiuYanyan Y LiuAlejandra López-CastroXavier López-GilZilu MaEilidh E MacNicolDan MadularuFrancesca MandinoSabina MarcianoMatthew J McAuslanPatrick McCunnAlison McIntoshXianzong MengLisa Meyer-BaeseStephan MissaultFederico MoroDaphne M P NaessensLaura J Nava-GomezHiroi NonakaJuan J OrtizJaakko PaasonenLore M PeetersMickaël PereiraPablo D PerezMarjory PompilusMalcolm PriorRustam RakhmatullinHenning M ReimannJonathan ReinwaldRodrigo Triana Del RioAlejandro Rivera-OlveraDaniel Ruiz-PérezGabriele RussoTobias J RuttenRie RyokeMarkus SackPiergiorgio SalvanBasavaraju G SanganahalliAileen SchroeterBhedita Jaya SeewooErwan SelingueAline SeuwenBowen ShiNikoloz SirmpilatzeJoanna A B SmithCorrie SmithFilip SobczakPetteri J StenroosMilou StraathofSandra StrobeltAkira SumiyoshiKengo TakahashiMaria E Torres-GarcíaRaul TudelaMonica Van den BergKajo van der MarelAran T B van HoutRoberta VertulloBenjamin VidalRoël M VroomanVictora X WangIsabel WankDavid J G WatsonTing YinYongzhi ZhangStefan ZurbrueggSophie AchardSarael AlcauterDorothee P AuerEmmanuel Luc BarbierJürgen BaudewigChristian F BeckmannNicolau BeckmannGuillaume J P C BecqErwin L A BlezerRadu BolbosSusann BoretiusSandrine BouvardEike BudingerJoseph D BuxbaumDiana CashVictoria ChapmanKai-Hsiang ChuangLuisa CiobanuBram F CoolenJeffrey W DalleyMarc DhenainRick M DijkhuizenOscar EstebanCornelius FaberMarcelo FeboKirk W FeindelGianluigi ForloniJérémie FouquetEduardo A Garza-VillarrealNatalia GassJeffrey C GlennonAlessandro GozziOlli GröhnAndrew HarkinArend HeerschapXavier HelluyKristina HerfertArnd HeuserJudith Regina HombergDanielle J HouwingFahmeed HyderGiovanna Diletta IelacquaIleana O JelescuHeidi Johansen-BergGen KanekoRyuta KawashimaShella D KeilholzGeorgios A KelirisClare KellyChristian KerskensJibran Y KhokharPeter C KindJean-Baptiste LangloisJason P LerchMonica A López-HidalgoDenise Manahan-VaughanFabien MarchandRogier B MarsGerardo MarsellaEdoardo MicottiEmma Muñoz-MorenoJamie NearThoralf NiendorfWillem M OttePatricia Pais-RoldánWen-Ju PanRoberto A Prado-AlcaláGina L QuirarteJennifer RodgerTimothy RosenowCassandra Sampaio BaptistaAlexander SartoriusStephen J SawiakTom W J ScheenenNoam ShemeshYen-Yu Ian ShihAmir ShmuelGuadalupe SoriaRon StoopGarth J ThompsonSally M TillNick ToddAnnemie Van Der LindenAnnette van der ToornGeralda A F van TilborgChristian VanhoveAndor VeltienMarleen VerhoyeLydia WachsmuthWolfgang Weber-FahrPatricia WenkXin YuValerio ZerbiNanyin ZhangBaogui B ZhangLuc ZimmerGabriel Allan DevenyiM Mallar ChakravartyAndreas HessPublished in: Nature neuroscience (2023)
Task-free functional connectivity in animal models provides an experimental framework to examine connectivity phenomena under controlled conditions and allows for comparisons with data modalities collected under invasive or terminal procedures. Currently, animal acquisitions are performed with varying protocols and analyses that hamper result comparison and integration. Here we introduce StandardRat, a consensus rat functional magnetic resonance imaging acquisition protocol tested across 20 centers. To develop this protocol with optimized acquisition and processing parameters, we initially aggregated 65 functional imaging datasets acquired from rats across 46 centers. We developed a reproducible pipeline for analyzing rat data acquired with diverse protocols and determined experimental and processing parameters associated with the robust detection of functional connectivity across centers. We show that the standardized protocol enhances biologically plausible functional connectivity patterns relative to previous acquisitions. The protocol and processing pipeline described here is openly shared with the neuroimaging community to promote interoperability and cooperation toward tackling the most important challenges in neuroscience.