[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"health-study-detail:100622069":3},{"organization":4,"armGroups":7,"interventions":19,"overallOfficials":26,"centralContacts":30,"locations":39,"responsibleParty":60,"collaborators":23,"id":63,"slug":23,"hasResults":64,"nctId":65,"briefTitle":66,"officialTitle":67,"acronym":23,"eligibilityCriteria":68,"healthyVolunteers":69,"sex":70,"minAge":71,"maxAge":72,"enrollmentInfo":73,"targetDuration":23,"studyType":76,"phases":77,"briefSummary":79,"conditions":80,"keywords":23,"overallStatus":42,"whyStopped":23,"lastUpdateSubmitDate":82,"lastUpdatePostDateStruct":83,"startDateStruct":86,"completionDateStruct":87,"leadSponsor":89,"locationsCount":90},{"fullName":5,"class":6},"University of Miami","OTHER",[8,14],{"label":9,"type":10,"description":11,"interventionNames":12},"RPE-Based Power Training","ACTIVE_COMPARATOR","The RPE system will be based on movement speed with an unloaded condition producing maximal speed (RPE=10) and a 1RM producing minimal speed (RPE = 1). If RPE is above 5, loads will be increased by 5% for upper body exercises and 2.5% for lower body exercises. If the RPE = between 4 and 5 the load will remain unchanged. If RPE falls below 4, loads will be lowered using the same percentages.",[13],"Behavioral: RPE-Based Power Training",{"label":15,"type":10,"description":16,"interventionNames":17},"Power Plateau-Based Power Training","Following two training sessions, the average power for each exercise will be calculated. When average power increases by a minimum of 5% from session one to session two, the load will remain unchanged to continue to reap power improvements. When the average power does not increase by at least 5% from session one to two, the load will be increased by the same protocol described above. Loads will only decrease when subjects cannot complete all repetitions with adequate form.",[18],"Behavioral: Power Plateau-Based Power Training",[20,24],{"type":21,"name":9,"description":11,"armGroupLabels":22,"otherNames":23},"BEHAVIORAL",[9],null,{"type":21,"name":15,"description":16,"armGroupLabels":25,"otherNames":23},[15],[27],{"name":28,"affiliation":5,"role":29},"Joseph F. Signorile, PhD","PRINCIPAL_INVESTIGATOR",[31,36],{"name":32,"role":33,"phone":34,"phoneExt":23,"email":35},"Gabby J Gilbert, MS","CONTACT","3052844173","gxg743@miami.edu",{"name":28,"role":33,"phone":37,"phoneExt":23,"email":38},"3052843105","jsignorile@miami.edu",[40],{"facility":41,"status":42,"city":43,"state":44,"zip":45,"country":46,"cosmosGeoPoint":47,"geoPoint":52,"contacts":53},"Laboratory of Neruomuscular Research and Active Aging","RECRUITING","Coral Gables","Florida","33147","United States",{"type":48,"coordinates":49},"Point",[50,51],-80.26838,25.72149,{"lat":51,"lon":50},[54,57,58],{"name":55,"role":33,"phone":56,"phoneExt":23,"email":35},"Gabby F Gilbert, MS","305-284-4173",{"name":28,"role":33,"phone":37,"phoneExt":23,"email":38},{"name":59,"role":29,"phone":23,"phoneExt":23,"email":23},"Joseph Signorile, PhD",{"type":29,"investigatorFullName":61,"investigatorTitle":62,"investigatorAffiliation":5,"oldNameTitle":23,"oldOrganization":23},"Joseph Signorile","Professor","100622069",false,"NCT07378826","Power Training Progression Methods","Comparison of Power Training Progression Methods in Older Independently Living Adults.","Inclusion Criteria:\n\n* 50 - 90 years of age.\n* Be able to walk 50m without any sort of assistance device.\n* Be able to understand and communicate in English to properly conduct the training and testing processes.\n\nExclusion Criteria:\n\n* Uncontrolled cardiovascular or neuromuscular disease that prevent participation in a training program.\n* Any systemic inflammatory or autoimmune conditions such as rheumatoid arthritis, or other serious concomitant medical illness.\n* Unresolved injury or surgery to the upper or lower limbs that prevents weight training.\n* \\- Montreal Cognitive Assessment (MoCA) score below 18",true,"ALL","50 Years","90 Years",{"count":74,"type":75},45,"ESTIMATED","INTERVENTIONAL",[78],"NA","This study will investigate the impact of two unique progression models for power training in a sample of healthy older adults. The objective is to identify the most practical methodology for implementing power training, which is considered a critical marker of functional capacity in older populations.",[81],"Activity, Motor","2026-01-30",{"date":84,"type":85},"2026-02-02","ACTUAL",{"date":82,"type":85},{"date":88,"type":75},"2027-05-30",{"name":5,"class":6},1]