[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"health-studies-list:{\"conditionNormalized\":\"motor-adaptation-and-generalization\",\"overallStatus\":[\"RECRUITING\",\"AVAILABLE\",\"NOT_YET_RECRUITING\"],\"orderBy\":\"LastUpdateSubmitDate:desc\",\"size\":25,\"offset\":0}":3,"health-study-condition:motor-adaptation-and-generalization":27},{"pageToken":4,"total":5,"offset":6,"count":5,"results":7},null,1,0,[8],{"id":9,"slug":10,"hasResults":11,"nctId":12,"briefTitle":13,"officialTitle":13,"acronym":4,"eligibilityCriteria":14,"healthyVolunteers":15,"sex":16,"minAge":17,"maxAge":18,"enrollmentInfo":19,"targetDuration":4,"studyType":22,"phases":23,"briefSummary":25,"conditions":26,"keywords":4,"overallStatus":30,"whyStopped":4,"lastUpdateSubmitDate":31,"lastUpdatePostDateStruct":32,"startDateStruct":35,"completionDateStruct":37,"leadSponsor":39,"locationsCount":5},"100512040","examining-lateralized-aspects-of-motor-control-using-non-invasive-neural-stimulation-100512040",false,"NCT05947279","Examining Lateralized Aspects of Motor Control Using Non-invasive Neural Stimulation","Inclusion Criteria:\n\n* Right-handed as determined by the short-form Edinburgh Handedness Inventory\n* Between the ages of 18 and 40\n\nExclusion Criteria:\n\n* Mixed- or left-handed as determined by the short-form Edinburgh Handedness Inventory\n* Self-reported history of any of the following:\n\nSeizure and\u002For diagnosis of epilepsy Fainting spells Concussion with loss of consciousness Ringing in the ears (tinnitus) Cochlear implants Migraines Diagnosed psychological or neurological condition Metal in the scalp\n\n* Any previous adverse reaction to a brain stimulation technique\n* Any previous adverse reaction to 3D virtual reality environments (i.e. 'cybersickness')\n* Possibility of being currently pregnant (for females only)\n* Current open head wound or skin condition of the scalp\n* Current implanted device(s) (i.e. cardiac pacemaker)",true,"ALL","18 Years","40 Years",{"count":20,"type":21},60,"ESTIMATED","INTERVENTIONAL",[24],"NA","Motor adaptation and generalization are believed to occur via the integration of various forms of sensory feedback for a congruent representation of the body's position in space along with estimation of inertial properties of the limb segments for accurate specification of movement. Thus, motor adaptation is often studied within curated environments incorporating a \"mis-match\" between different sensory systems (i.e. a visual field shift via prism googles or a visuomotor rotation via virtual reality environment) and observing how motor plans change based on this mis-match. However, these adaptations are environment-specific and show little generalization outside of their restricted experimental setup. There remains a need for motor adaptation research that demonstrates motor learning that generalizes to other environments and movement types. This work could then inform physical and occupational therapy neurorehabilitation interventions targeted at addressing motor deficits.",[27,28,29],"Motor Adaptation and Generalization","Posterior Parietal Cortex","Cerebellum","RECRUITING","2026-03-12",{"date":33,"type":34},"2026-03-13","ACTUAL",{"date":36,"type":34},"2024-04-03",{"date":38,"type":21},"2026-08-15",{"name":40,"class":41},"Virginia Commonwealth University","OTHER"]