[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"health-study-detail:100649736":3},{"organization":4,"outcomesModule":7,"designInfo":69,"detailedDescription":77,"studyPopulation":68,"armGroups":78,"interventions":98,"overallOfficials":107,"centralContacts":111,"locations":121,"responsibleParty":139,"collaborators":68,"id":142,"slug":143,"hasResults":144,"nctId":145,"briefTitle":146,"officialTitle":147,"acronym":68,"eligibilityCriteria":148,"healthyVolunteers":149,"sex":150,"minAge":151,"maxAge":68,"enrollmentInfo":152,"targetDuration":68,"studyType":155,"phases":156,"briefSummary":158,"conditions":159,"keywords":161,"overallStatus":168,"whyStopped":68,"lastUpdateSubmitDate":169,"lastUpdatePostDateStruct":170,"startDateStruct":173,"completionDateStruct":175,"leadSponsor":177,"locationsCount":178},{"fullName":5,"class":6},"University of Sharjah","OTHER",{"primaryOutcomes":8,"secondaryOutcomes":33,"otherOutcomes":68},[9,13,17,21,25,29],{"measure":10,"description":11,"timeFrame":12},"Recruitment Rate","Recruitment feasibility will be assessed by calculating the average number of participants enrolled per month during the recruitment period.\n\nUnit of Measure:\n\nParticipants\u002Fmonth","From initiation of recruitment until enrollment of the final participant, anticipated period of (12 months)",{"measure":14,"description":15,"timeFrame":16},"Participant Attrition Rate","Participant retention will be assessed by calculating the proportion of enrolled participants who withdraw or are lost to follow-up before completion of the final study assessment.\n\nUnit of Measure:\n\nPercentage (%)","From enrollment through the 3-6-month follow-up.",{"measure":18,"description":19,"timeFrame":20},"Supervised Intervention Attendance Rate","Intervention adherence will be assessed by calculating the percentage of prescribed supervised intervention sessions attended by each participant.\n\nUnit of Measure:\n\nPercentage (%)","Throughout the 8-12-week intervention period.",{"measure":22,"description":23,"timeFrame":24},"Participant Satisfaction with the Intervention","Acceptability of the intervention will be assessed using a participant satisfaction questionnaire ( PSQ-18) administered after completion of the intervention. The total satisfaction score will be reported, with higher scores indicating greater participant satisfaction.\n\nUnit of Measure:\n\nQuestionnaire total score","Immediately after completion of the 8-12-week intervention.",{"measure":26,"description":27,"timeFrame":28},"Proportion of Participants with Usable Neurophysiological Data","Data quality will be assessed by calculating the proportion of participants with complete, artifact-free, and analyzable neurophysiological recordings (EEG, EMG, and fNIRS) according to predefined signal-quality criteria.\n\nUnit of Measure:\n\nPercentage (%)","Baseline and immediately after completion of the 8-12-week intervention",{"measure":30,"description":31,"timeFrame":32},"Proportion of Participants with Complete Biomechanical Data","Data completeness will be assessed by calculating the proportion of participants with complete and analyzable biomechanical recordings, including gait and balance measures, according to predefined quality-control criteria.\n\nUnit of Measure:\n\nPercentage (%)","Baseline, immediately after completion of the 8-12-week intervention, and at the 3-6-month follow-up.",[34,38,41,45,48,51,54,58,62,65],{"measure":35,"description":36,"timeFrame":37},"Number of Falls per Participant","Description The total number of falls experienced by each participant during the follow-up period will be prospectively recorded using monthly fall diaries, structured telephone follow-up, and caregiver confirmation when applicable. A fall is defined as \"an unexpected event in which the participant comes to rest on the ground, floor, or lower level.\" Unit of Measure Number of falls","During the 3- to 6-month follow-up period after completion of the intervention.",{"measure":39,"description":40,"timeFrame":37},"Time to First Fall","Time from completion of the intervention to the first prospectively recorded fall will be measured using monthly fall diaries, structured telephone follow-up, and caregiver confirmation when applicable. A fall is defined as \"an unexpected event in which the participant comes to rest on the ground, floor, or lower level.\" Unit of Measure Days (or Months, depending on your planned statistical analysis)",{"measure":42,"description":43,"timeFrame":44},"Neurophysiological Outcomes (Corticomuscular Coherence (CMC))","Primary metric:\n\nΔCMCβ = CMCFoam EC - CMCFirm EO\n\nOutcomes:\n\n* Change in ΔCMCβ from baseline to post-intervention\n* Normalization of task-dependent cortical modulation Interpretation: Reflects changes in cortical involvement and neural efficiency in postural control.","Phase 1 at baseline, post phase 2 intervention 8-12 weeks, and follow up 3-6 month",{"measure":46,"description":47,"timeFrame":44},"Neurophysiological Outcomes (Intermuscular Coherence (IMC))","Coordination of shared neural input between muscles assessed using intermuscular coherence.\n\nPrimary metric:\n\nΔIMCLF = IMCFoam EC - IMCFirm EO\n\nOutcomes:\n\n* Change in low-frequency IMC modulation\n* Improvement in coordination patterns Interpretation: Reflects reorganization of subcortical and intermuscular coordination mechanisms.",{"measure":49,"description":50,"timeFrame":32},"Change in Prefrontal Oxygenated Hemoglobin Concentration During Dual-Task Walking","Prefrontal cortical activation will be assessed using functional near-infrared spectroscopy. Oxygenated hemoglobin concentration will be recorded during single-task walking and dual-task walking. The outcome will be the dual-task-related change in oxygenated hemoglobin concentration, calculated as the mean oxygenated hemoglobin concentration during dual-task walking minus the mean oxygenated hemoglobin concentration during single-task walking. Results will be reported in micromoles per liter (µmol\u002FL). A reduction in excessive dual-task-related prefrontal oxygenation after the intervention will be interpreted as improved neural efficiency, provided that walking and cognitive-task performance are maintained or improved.",{"measure":52,"description":53,"timeFrame":32},"Change in Global Walk Quality Index","Overall gait quality will be assessed using the Global Walk Quality Index obtained from the Gait \\& Balance App. The Global Walk Quality Index is a single unitless composite indicator integrating walking speed, step length, step time, gait symmetry, and gait variability. These gait parameters will be combined according to the predefined Global Walk Quality Index calculation method, and only the resulting composite score will be reported under this outcome measure. Change will be calculated from baseline to each post-baseline assessment.",{"measure":55,"description":56,"timeFrame":57},"Change in Overall Balance Stability Index","Overall postural stability will be assessed using the ProKin Balance Platform under the foam eyes-closed condition. The Overall Balance Stability Index, generated by the ProKin software, will be used as the primary balance outcome. This composite index integrates anteroposterior and mediolateral postural sway into a single measure of overall balance performance. Lower values indicate better postural stability.","Baseline, immediately after the 8-12-week intervention, and at the 3-6-month follow-up.",{"measure":59,"description":60,"timeFrame":61},"Timed Up and Go Test Completion Time","Functional mobility will be assessed using the Timed Up and Go (TUG) test. The time required to stand from a standard chair, walk 3 meters, turn, return, and sit down will be recorded.\n\nUnit Seconds","Baseline, post-intervention, and 3-6-month follow-up.",{"measure":63,"description":64,"timeFrame":61},"Berg Balance Scale Total Score","Balance performance will be assessed using the Berg Balance Scale (BBS). The total score ranges from 0 to 56, with higher scores indicating better balance performance.\n\nUnit Total score (0-56)",{"measure":66,"description":67,"timeFrame":61},"Functional Reach Test Distance","Dynamic balance will be assessed using the Functional Reach Test (FRT). The maximum forward reach distance while maintaining a fixed base of support will be measured.\n\nUnit Centimeters",null,{"allocation":70,"interventionModel":71,"interventionModelDescription":72,"primaryPurpose":6,"observationalModel":68,"timePerspective":68,"maskingInfo":73},"RANDOMIZED","PARALLEL","Phase 1 (Causal-Comparative Objective) To compare neural, neurocognitive, and biomechanical determinants of fall risk between older adults classified as high fall risk and those classified as low\u002Fno fall risk, using integrated multimodal measures including corticomuscular coherence (CMC), intermuscular coherence (IMC), prefrontal cerebral oxygenation (fNIRS), dual-task performance, and dynamic gait and balance parameters.\n\nPhase 2 (Randomized Controlled Trial Objective)\n\nTo evaluate whether personalized rehabilitation guided by individual neurophysiological and neurocognitive profiles results in superior improvements compared with conventional non-stratified rehabilitation in:\n\n* Fall risk (primary clinical outcome)\n* Neural control efficiency\n* Cognitive-motor integration\n* Biomechanical stability and functional mobility",{"masking":74,"maskingDescription":68,"whoMasked":75},"SINGLE",[76],"OUTCOMES_ASSESSOR","Background:\n\nFalls among older adults are a leading cause of injury, disability, and loss of independence worldwide. Despite the availability of exercise-based and multifactorial interventions, their effectiveness remains inconsistent, partly because current approaches do not adequately address the underlying mechanisms of instability. Emerging evidence suggests that fall risk arises from complex interactions between neural, cognitive, and biomechanical systems, with substantial heterogeneity in control strategies across individuals. This study aims to develop and evaluate a mechanism-based framework that integrates these domains to improve fall-risk assessment and guide personalized rehabilitation.\n\nObjectives:\n\nThe primary objectives are: (1) to compare neural, neurocognitive, and biomechanical determinants of fall risk between older adults with high and low fall risk; and (2) to evaluate whether a personalized rehabilitation program guided by individual neurophysiological and neurocognitive profiles leads to greater reductions in fall risk and improvements in motor control compared with conventional rehabilitation.\n\nMethods:\n\nThis study adopts a two-phase multimodal design. Phase 1 is a cross-sectional causal-comparative study involving approximately 80 community-dwelling older adults aged 65 years and above, classified as high or low fall risk. Participants will undergo comprehensive assessment of neural control, neurocognitive load, and functional performance using electroencephalography and electromyography, functional near-infrared spectroscopy during dual-task conditions, and quantitative gait and balance analysis. Phase 2 is a pilot randomized controlled trial involving high fall-risk participants, who will be allocated to either a personalized rehabilitation program guided by individual neurophysiological and neurocognitive profiles or a conventional evidence-based fall-prevention program. Both groups will receive supervised training for 8-12 weeks. Primary outcomes include feasibility measures and prospective fall events over 3-6 months. Secondary outcomes include changes in neural control, cognitive-motor integration, and biomechanical stability.\n\nDiscussion:\n\nThis study proposes a novel phenotype-guided approach to fall prevention that targets the underlying neural control mechanisms rather than general physical impairments. By integrating multimodal assessments with personalized intervention, the study has the potential to improve the precision and effectiveness of rehabilitation strategies. Findings will provide important insights into the mechanisms of fall risk and inform the design of larger clinical trials and future clinical practice.",[79,83,86,92],{"label":80,"type":81,"description":82,"interventionNames":68},"Phase 1: Observational \u002F High Fall-Risk Older Adults - Multimodal Assessment","NO_INTERVENTION","Participants aged ≥65 years classified as high fall risk (based on fall history and\u002For impaired functional performance) will undergo a comprehensive multimodal assessment to characterize neural, neurocognitive, and biomechanical determinants of fall risk. No therapeutic intervention will be administered.\n\nAssessments include:\n\nNeurophysiological recordings using electroencephalography and electromyography during standardized balance tasks Neurocognitive assessment using functional near-infrared spectroscopy during single- and dual-task conditions Quantitative gait and balance assessment using wearable smartphone-based sensors Functional clinical measures of mobility and balance\n\nThe purpose of this arm is to identify mechanistic differences and support neurophysiological phenotyping.",{"label":84,"type":81,"description":85,"interventionNames":68},"Phase 1: Observational \u002F Low\u002FNo Fall-Risk Older Adults - Multimodal Assessment","Participants aged ≥65 years classified as low or no fall risk will undergo the same multimodal assessment protocol as the high-risk group. This arm serves as a reference group to establish normative ranges for neural, neurocognitive, and biomechanical variables\n\nAssessments include:\n\n* Neurophysiological recordings using electroencephalography and electromyography during standardized balance tasks\n* Neurocognitive assessment using functional near-infrared spectroscopy during single- and dual-task conditions\n* Quantitative gait and balance assessment using wearable smartphone-based sensors\n* Functional clinical measures of mobility and balance\n\nData from this group will be used to define reference thresholds for neurophysiological classification and comparative analysis.",{"label":87,"type":88,"description":89,"interventionNames":90},"Phase 2: Randomized Controlled Trial (Intervention) \u002F Personalized Neurophysiological Rehabilitation","EXPERIMENTAL","Participants classified as high fall risk will receive a personalized rehabilitation program tailored to their individual neurophysiological and neurocognitive profile, derived from Phase 1 assessments.\n\nThe intervention targets underlying neural control mechanisms and is adapted based on identified control strategies (e.g., cortical-dominant, reflex-dominant, or integrated control).\n\nIntervention components may include:\n\nTask-specific balance and gait training under variable sensory conditions Dual-task training to improve cognitive-motor integration External focus and rhythm-based training to enhance movement automaticity Reaction-based and perturbation training to improve adaptability Progressive modulation of task complexity based on participant response\n\nProgram details:\n\nDuration: 8-12 weeks Frequency: 2-3 supervised sessions per week Session length: 45-60 minutes\n\nThe intervention is dynamically progressed based on neurophysiological and functional responses.",[91],"Other: Personalized Neurophysiological Rehabilitation",{"label":93,"type":94,"description":95,"interventionNames":96},"Phase 2: Randomized Controlled Trial (Intervention)\u002FConventional Fall-Prevention Exercise Program","ACTIVE_COMPARATOR","Participants classified as high fall risk will receive a standard evidence-based fall-prevention exercise program consistent with current clinical guidelines.\n\nThe intervention focuses on general physical improvements rather than individualized neural mechanisms.\n\nIntervention components include:\n\nBalance training (static and dynamic postural control exercises) Lower-limb strengthening exercises (e.g., sit-to-stand, step-ups, resistance training) Gait and functional mobility training (walking, turning, obstacle negotiation) Flexibility and mobility exercises Education on fall prevention strategies\n\nProgram details:\n\nDuration: 8-12 weeks Frequency: 2-3 supervised sessions per week Session length: 45-60 minutes\n\nProgression is based on standard clinical criteria such as safety, tolerance, and performance.",[97],"Other: Conventional Fall-Prevention Exercise Program",[99,103],{"type":6,"name":100,"description":101,"armGroupLabels":102,"otherNames":68},"Personalized Neurophysiological Rehabilitation","The intervention targets underlying neural control mechanisms and is adapted based on identified control strategies (e.g., cortical-dominant, reflex-dominant, or integrated control).\n\nIntervention components may include:\n\nTask-specific balance and gait training under variable sensory conditions Dual-task training to improve cognitive-motor integration External focus and rhythm-based training to enhance movement automaticity Reaction-based and perturbation training to improve adaptability Progressive modulation of task complexity based on participant response\n\nProgram details:\n\nDuration: 8-12 weeks Frequency: 2-3 supervised sessions per week Session length: 45-60 minutes\n\nThe intervention is dynamically progressed based on neurophysiological and functional responses.",[87],{"type":6,"name":104,"description":105,"armGroupLabels":106,"otherNames":68},"Conventional Fall-Prevention Exercise Program","The intervention focuses on general physical improvements rather than individualized neural mechanisms.\n\nIntervention components include:\n\nBalance training (static and dynamic postural control exercises) Lower-limb strengthening exercises (e.g., sit-to-stand, step-ups, resistance training) Gait and functional mobility training (walking, turning, obstacle negotiation) Flexibility and mobility exercises Education on fall prevention strategies\n\nProgram details:\n\nDuration: 8-12 weeks Frequency: 2-3 supervised sessions per week Session length: 45-60 minutes\n\nProgression is based on",[93],[108],{"name":109,"affiliation":5,"role":110},"Ibrahim Moustafa Abuamer, professor","STUDY_DIRECTOR",[112,117],{"name":113,"role":114,"phone":115,"phoneExt":68,"email":116},"Aisha Salim Alsuwaidi, PhD","CONTACT","+971507373053","U25100059@sharjah.ac.ae",{"name":118,"role":114,"phone":119,"phoneExt":68,"email":120},"Ibrahim Mostafa Abuamr, Professor","+972565057513","iabuamr@sharjah.ac.ae",[122],{"facility":5,"status":68,"city":123,"state":68,"zip":68,"country":124,"countryCode":125,"cosmosGeoPoint":126,"geoPoint":131,"contacts":132},"Sharjah city","United Arab Emirates","AE",{"type":127,"coordinates":128},"Point",[129,130],55.41221,25.3342,{"lat":130,"lon":129},[133,136],{"name":134,"role":114,"phone":135,"phoneExt":68,"email":120},"Ibrahim M Abuamr, professor","+97165055713",{"name":137,"role":138,"phone":68,"phoneExt":68,"email":68},"Aisha S Alsuwaidi, PhD","PRINCIPAL_INVESTIGATOR",{"type":138,"investigatorFullName":140,"investigatorTitle":141,"investigatorAffiliation":5,"oldNameTitle":68,"oldOrganization":68},"Aisha Salim Alsuwaidi","principial investigator - Physiotherapy Department","100649736","neural-cognitive-and-biomechanical-determinants-of-falls-in-older-adults-100649736",false,"NCT07739056","Neural, Cognitive, and Biomechanical Determinants of Falls in Older Adults","Neural, Cognitive, and Biomechanical Determinants of Falls in Older Adults: A Two-Phase Multimodal Investigation With a Phenotype-Guided Rehabilitation Trial","Inclusion Criteria:\n\n* Participants must meet all of the following criteria:\n\n  * Age ≥ 65 years\n  * Community-dwelling\n  * Ability to ambulate independently (with or without assistive device)\n  * Ability to understand instructions and provide informed consent\n\nParticipants will be stratified into fall-risk categories based on established criteria:\n\n* High fall risk: history of ≥1 fall in the previous 12 months and\u002For impaired functional performance (e.g., TUG \\> 13.5 s or BBS ≤49)\n* Low\u002Fno fall risk: no falls and preserved functional mobility These criteria are consistent with previously published fall-prevention trials.\n\nExclusion Criteria:\n\n* Participants will be excluded if they have:\n\n  * Neurological conditions affecting gait or balance (e.g., stroke, Parkinson's disease)\n  * Severe musculoskeletal disorders limiting mobility\n  * Severe cognitive impairment (e.g., inability to follow instructions or MoCA \\\u003C 18)\n  * Uncontrolled cardiovascular or metabolic conditions\n  * Current participation in structured rehabilitation programs\n  * Contraindications to EEG, EMG, or fNIRS measurements",true,"ALL","65 Years",{"count":153,"type":154},80,"ESTIMATED","INTERVENTIONAL",[157],"NA","The goal of this clinical trial with an embedded observational phase is to evaluate whether a phenotype-guided, personalized rehabilitation program can improve fall risk and underlying neural control mechanisms in older adults aged ≥65 years, including both high and low fall-risk individuals.\n\nThe main questions it aims to answer are:\n\nDo older adults at high fall risk exhibit altered neural, neurocognitive, and biomechanical profiles compared with low\u002Fno fall-risk individuals? Does personalized rehabilitation guided by neurophysiological and neurocognitive profiles result in greater reductions in fall risk and improvements in motor control compared with conventional rehabilitation?\n\nResearchers will compare personalized phenotype-guided rehabilitation to conventional evidence-based fall-prevention exercise to determine whether targeted, mechanism-based intervention leads to superior clinical and mechanistic outcomes.\n\nParticipants will:\n\nUndergo a comprehensive multimodal assessment including neurophysiological (EEG, EMG), neurocognitive (fNIRS, dual-task testing), and biomechanical (gait and balance) measures Be classified into fall-risk and neurophysiological control profiles based on assessment results (Phase 2 - high fall-risk participants only) be randomly assigned to either personalized rehabilitation or conventional rehabilitation Attend supervised exercise sessions 2-3 times per week for 8-12 weeks Complete gait, balance, and cognitive-motor assessments before and after the intervention Record falls prospectively using monthly fall diaries and follow-up monitoring over 3-6 months",[160],"Accidental Falls\u002FPrevention & Control",[162,163,164,165,166,167],"Fall risk","Older adults","Balance","Neural control","Cognitive-motor integration","Phenotype-guided therapy","NOT_YET_RECRUITING","2026-07-27",{"date":171,"type":172},"2026-07-31","ACTUAL",{"date":174,"type":154},"2026-12-31",{"date":176,"type":154},"2028-12-31",{"name":5,"class":6},1]