[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"health-study-detail:100458905":3},{"organization":4,"armGroups":7,"interventions":15,"overallOfficials":29,"centralContacts":33,"locations":39,"responsibleParty":55,"collaborators":57,"id":62,"slug":63,"hasResults":64,"nctId":65,"briefTitle":66,"officialTitle":67,"acronym":37,"eligibilityCriteria":68,"healthyVolunteers":69,"sex":70,"minAge":71,"maxAge":72,"enrollmentInfo":73,"targetDuration":37,"studyType":76,"phases":77,"briefSummary":79,"conditions":80,"keywords":82,"overallStatus":85,"whyStopped":37,"lastUpdateSubmitDate":86,"lastUpdatePostDateStruct":87,"startDateStruct":90,"completionDateStruct":92,"leadSponsor":94,"locationsCount":95},{"fullName":5,"class":6},"University Hospital, Ghent","OTHER",[8],{"label":9,"type":10,"description":11,"interventionNames":12},"Complete evaluation UDO and fMRI","EXPERIMENTAL","Evaluation including both urodynamic evaluation and functional MRI testing",[13,14],"Diagnostic Test: invasive urodynamic evaluation","Diagnostic Test: functional magnetic resonance imaging during bladder filling",[16,23],{"type":17,"name":18,"description":19,"armGroupLabels":20,"otherNames":21},"DIAGNOSTIC_TEST","invasive urodynamic evaluation","Invasive urodynamic evaluation to define maximum cystometric capacity. By means of catheterisation the bladder gets filled and volumes en pressures are measured.",[9],[22],"UDO",{"type":17,"name":24,"description":25,"armGroupLabels":26,"otherNames":27},"functional magnetic resonance imaging during bladder filling","Functional MRI is used to capture brain activity during tasks. The task in the current study is bladder infusion and withdrawal by means of the INFSYS-2 infusion\u002Fwithdrawal pump (Leitner et al. 2017)",[9],[28],"fMRI",[30],{"name":31,"affiliation":5,"role":32},"Bieke Samijn, PhD","PRINCIPAL_INVESTIGATOR",[34],{"name":31,"role":35,"phone":36,"phoneExt":37,"email":38},"CONTACT","+3293321938",null,"bieke.samijn@ugent.be",[40],{"facility":41,"status":37,"city":42,"state":43,"zip":44,"country":45,"countryCode":46,"cosmosGeoPoint":47,"geoPoint":52,"contacts":53},"Ghent University Hospital","Ghent","Flanders","9000","Belgium","BE",{"type":48,"coordinates":49},"Point",[50,51],3.71667,51.05,{"lat":51,"lon":50},[54],{"name":31,"role":35,"phone":36,"phoneExt":37,"email":38},{"type":56,"investigatorFullName":37,"investigatorTitle":37,"investigatorAffiliation":37,"oldNameTitle":37,"oldOrganization":37},"SPONSOR",[58,60],{"name":59,"class":6},"University Ghent",{"name":61,"class":6},"University of Zurich","100458905","brain-activity-during-bladder-filling-pilot-study-of-an-fmri-protocol-100458905",false,"NCT05255692","Brain Activity During Bladder Filling: Pilot Study of an fMRI Protocol","Pilot Study: Apllicability of an fMRI Protocol for Incontinence Research","Inclusion Criteria:\n\n* Healthy adults\n\nExclusion Criteria:\n\n* lower or upper urinary tract dysfunction",true,"ALL","20 Years","35 Years",{"count":74,"type":75},6,"ESTIMATED","INTERVENTIONAL",[78],"NA","Urinary incontinence is the most frequently observed lower urinary tract symptom (LUTS) in children with cerebral palsy (CP) (Samijn et al., 2016).\n\nHigher brain centers responsible for bladder function may be related to the presence of incontinence.\n\nThe current pilot study is the first study of a research project focusing on correlations between brain damage and incontinence.",[81],"fMRI Research",[83,84],"Bladder control","functional magnetic resonance imaging","NOT_YET_RECRUITING","2024-06-03",{"date":88,"type":89},"2024-06-05","ACTUAL",{"date":91,"type":75},"2025-05-01",{"date":93,"type":75},"2026-09-30",{"name":5,"class":6},1]