[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"health-study-detail:100652741":3},{"organization":4,"outcomesModule":7,"designInfo":30,"detailedDescription":43,"studyPopulation":29,"armGroups":44,"interventions":64,"overallOfficials":74,"centralContacts":78,"locations":88,"responsibleParty":112,"collaborators":29,"id":114,"slug":115,"hasResults":116,"nctId":117,"briefTitle":118,"officialTitle":119,"acronym":120,"eligibilityCriteria":121,"healthyVolunteers":122,"sex":123,"minAge":124,"maxAge":125,"enrollmentInfo":126,"targetDuration":29,"studyType":129,"phases":130,"briefSummary":132,"conditions":133,"keywords":136,"overallStatus":91,"whyStopped":29,"lastUpdateSubmitDate":145,"lastUpdatePostDateStruct":146,"startDateStruct":149,"completionDateStruct":151,"leadSponsor":153,"locationsCount":154},{"fullName":5,"class":6},"Shifa Tameer-e-Millat University","OTHER",{"primaryOutcomes":8,"secondaryOutcomes":25,"otherOutcomes":29},[9,13,16,19,22],{"measure":10,"description":11,"timeFrame":12},"Functional Mobility (Timed Up and Go Test) Change from Baseline in Timed Up and Go (TUG) Test Time at 8 Weeks","Functional mobility will be evaluated using the Timed Up and Go (TUG) test. It measures the time (in seconds) taken by a participant to stand up from a chair, walk 3 meters, turn, walk back, and sit down. Lower times indicate better mobility.\n\nFunctional mobility and balance will be assessed using the Timed Up and Go (TUG) test, a simple and widely used clinical measure of mobility and fall risk.\n\nIn this test, participants are required to stand up from a standard chair, walk a distance of 3 meters, turn around, walk back to the chair, and sit down. The total time taken to complete the task is recorded in seconds.\n\nShorter completion times indicate better functional mobility and balance, while longer times indicate impaired mobility and increased risk of falls. A time of less than 10 seconds is considered normal for healthy adults, 10-19 seconds indicates good mobility, 20-29 seconds suggests variable mobility, and 30 seconds or more indicates impaired mobility and a higher risk of falls","Baseline and after 8 weeks of intervention",{"measure":14,"description":15,"timeFrame":12},"Executive Function (Trail Making Test) Change from Baseline in Trail Making Test (Part A and Part B) Completion Time at 8 Weeks","Executive function will be assessed using the Trail Making Test (TMT Parts A and B), which evaluates cognitive flexibility, processing speed, and task-switching ability. Performance is measured by completion time in seconds.\n\nCognitive function, specifically attention, processing speed, and executive function, will be assessed using the Trail Making Test (TMT). The test consists of two parts: Part A and Part B.\n\nIn Part A, participants are required to connect numbered dots in sequential order as quickly as possible, assessing visual scanning and processing speed. In Part B, participants alternate between numbers and letters in sequence (e.g., 1-A-2-B), assessing executive function and task-switching ability.\n\nThe outcome is measured as the time (in seconds) taken to complete each part. Longer completion times indicate poorer cognitive performance, while shorter times indicate better cognitive performance.\n\nThe Trail Making Test will be administered at baseline and after completion of the",{"measure":17,"description":18,"timeFrame":12},"Global Cognitive Function (Montreal Cognitive Assessment) Change from Baseline in Montreal Cognitive Assessment (MoCA) Score at 8 Weeks","Global cognitive function will be assessed using the Montreal Cognitive Assessment (MoCA). It evaluates multiple cognitive domains including attention, memory, language, visuospatial ability, and executive function. Scores range from 0 to 30, with higher scores indicating better cognitive performance.\n\nCognitive function will be assessed using the Montreal Cognitive Assessment (MoCA), a standardized screening tool designed to detect mild cognitive impairment. The MoCA evaluates multiple cognitive domains including attention, executive function, memory, language, visuospatial skills, abstraction, calculation, and orientation.\n\nThe total score ranges from 0 to 30, with higher scores indicating better cognitive performance and lower scores indicating greater cognitive impairment. A score of 26 or above is generally considered normal cognitive function.\n\nThe MoCA will be administered at baseline and after completion of the intervention period to assess changes in cognitive function.",{"measure":20,"description":21,"timeFrame":12},"Balance Performance (Berg Balance Scale) Change from Baseline in Berg Balance Scale (BBS) Score at 8 Weeks","Balance will be assessed using the Berg Balance Scale (BBS), a 14-item objective measure designed to assess static and dynamic balance abilities in older adults. Scores range from 0 to 56, with higher scores indicating better balance performance.\n\nBalance will be assessed using the Berg Balance Scale (BBS), a standardized clinical tool used to evaluate static and dynamic balance abilities. The BBS consists of 14 functional tasks, including sitting, standing, transferring, reaching, turning, and single-leg stance.\n\nEach item is scored on a 5-point scale ranging from 0 to 4, with a maximum total score of 56. Higher scores indicate better balance performance, while lower scores indicate greater balance impairment and increased risk of falls.\n\nA score of 41-56 indicates low fall risk, 21-40 indicates medium fall risk, and 0-20 indicates high fall risk.\n\nThe BBS will be administered at baseline and after completion of the intervention period to assess changes in balance performance.",{"measure":23,"description":24,"timeFrame":12},"Cognitive Function (Mini-Mental State Examination) Change from Baseline in Mini-Mental State Examination (MMSE) Score at 8 Weeks","Cognitive function will be assessed using the Mini-Mental State Examination (MMSE), a widely used screening tool for cognitive impairment. The MMSE evaluates domains including orientation, registration, attention and calculation, recall, and language. Scores range from 0 to 30, with higher scores indicating better cognitive function.\n\nCognitive function will be assessed using the Mini-Mental State Examination (MMSE), a widely used standardized tool for evaluating cognitive impairment. The MMSE assesses domains including orientation, registration, attention and calculation, recall, language, and visuospatial ability.\n\nThe total score ranges from 0 to 30, with higher scores indicating better cognitive function and lower scores indicating greater cognitive impairment. A score of 24-30 is generally considered normal cognition, 18-23 indicates mild cognitive impairment, and 0-17 indicates severe cognitive impairment.\n\nMMSE will be administered at baseline and after completion",[26],{"measure":27,"description":28,"timeFrame":12},"Quality of Life Change from Baseline in WHO Quality of Life-BREF (WHOQOL-BREF) Score at 6 Weeks","Quality of life will be measured using the WHOQOL-BREF questionnaire, which assesses physical health, psychological health, social relationships, and environmental domains. Higher scores indicate better quality of life.\n\nQuality of life will be assessed using the World Health Organization Quality of Life-BREF (WHOQOL-BREF) questionnaire, a standardized instrument that evaluates individuals' perception of their position in life in the context of culture and value systems.\n\nThe WHOQOL-BREF consists of 26 items covering four domains: physical health, psychological health, social relationships, and environmental well-being. Each item is scored on a 5-point Likert scale, and domain scores are transformed to a scale of 0 to 100, with higher scores indicating better quality of life.\n\nThe WHOQOL-BREF will be administered at baseline and after completion of the intervention period to assess changes in quality of life.",null,{"allocation":31,"interventionModel":32,"interventionModelDescription":33,"primaryPurpose":34,"observationalModel":29,"timePerspective":29,"maskingInfo":35},"RANDOMIZED","PARALLEL","Participants will undergo 8-week dual-task training combining motor and cognitive tasks.\n\nIntegrated: simultaneous motor + cognitive tasks Sequential: motor and cognitive tasks performed separately","TREATMENT",{"masking":36,"maskingDescription":37,"whoMasked":38},"QUADRUPLE","single-blind (assessor-blinded, if applicable)",[39,40,41,42],"PARTICIPANT","CARE_PROVIDER","INVESTIGATOR","OUTCOMES_ASSESSOR","The elderly population is rapidly growing as a result of the global increase in life expectancy, and age-related cognitive disorders are becoming more common. Dementia has become a major public health concern that greatly contributes to disability, dependence, and a lower quality of life among older adults worldwide It is commonly acknowledged that mild cognitive impairment (MCI) is a stage that lies between dementia and normal cognitive aging. While independence in the most fundamental aspects of daily life is largely maintained, it is characterized by an apparent decline in cognitive abilities, especially memory and executive functions, early intervention is crucial because people with MCI continue to have an elevated risk of developing Alzheimer's disease Physical decline, such as decreased gait speed, balance issues, muscle weakness, and a high risk of falls, is often associated with cognitive impairment in elderly individuals. Since shared neural pathways support both motor and cognitive functions, these physical impairments are closely associated with cognitive dysfunction Elderly people's functional independence and quality of life are severely compromised when cognitive decline and physical decline coexist Pharmacological treatments for dementia and cognitive impairment provide only slight symptom relief and are ineffective at stopping the progression of the disease, despite advancements in medical management. Because of this restriction, research attention is now more focused on non-pharmacological strategies to improve functional outcomes and postpone cognitive decline Given their ability to address both cognitive and motor deficits at the same time, combined cognitive and physical training approaches have drawn more attention in this context One effective rehabilitation technique is dual-task training, which involves performing cognitive and motor tasks simultaneously or sequentially. This method places significant demands on attentional control and executive functioning and reflects functional demands found in real life, such as walking while completing a cognitive task. Dual-task training increases prefrontal cortical activation, boosts neural efficiency, and encourages neuroplastic adaptations that support cognitive and motor function, according to neurophysiological evidence There are two main ways to deliver motor-cognitive training: sequential (successive) dual-task training and integrated (simultaneous) dual-task training. The simultaneous performance of cognitive and motor tasks is necessary for integrated training, which may improve executive control by increasing cognitive-motor interference. By using different learning mechanisms, sequential training, on the other hand, enables concentrated attention to each task and may promote neural consolidation and task automation Even though both strategies have shown positive results, the research so far has produced inconsistent findings about how effective they are in comparison, especially when it comes to older people with various levels of cognitive impairment. Furthermore, there aren't many carefully planned multi-arm randomized controlled trials that compare integrated and sequential dual-task training in groups of people with mild to moderate cognitive impairment.\n\nTherefore, the current study uses a four-arm randomized controlled trial design to compare the effects of integrated versus sequential dual-task training in senior citizen with mild to moderate cognitive impairment. This study aims to determine the best intervention approach for strengthening cognitive function, increasing mobility, and encouraging functional independence in this expanding and vulnerable population by assessing cognitive, physical, and functional outcomes.",[45,51,55,60],{"label":46,"type":47,"description":48,"interventionNames":49},"Integrated Dual-Task Training (Mild Cognitive Impairment)","EXPERIMENTAL","Participants with mild cognitive impairment will receive integrated dual-task training, where motor and cognitive tasks are performed simultaneously. Training will be conducted for 8 weeks, 3 sessions per week, each lasting 45 minutes.",[50],"Behavioral: Integrated Dual-Task Training",{"label":52,"type":47,"description":53,"interventionNames":54},"Integrated Dual-Task Training (Moderate Cognitive Impairment)","Participants with moderate cognitive impairment will receive integrated dual-task training combining simultaneous motor and cognitive tasks. The intervention will last 8 weeks, with 3 sessions per week of 45 minutes each.",[50],{"label":56,"type":47,"description":57,"interventionNames":58},"Sequential Dual-Task Training (Mild Cognitive Impairment)","Participants with mild cognitive impairment will undergo sequential dual-task training, where motor and cognitive tasks are performed separately. Training will be conducted over 8 weeks, 3 sessions per week, 45 minutes per session.",[59],"Behavioral: Sequential Dual-Task Training",{"label":61,"type":47,"description":62,"interventionNames":63},"Sequential Dual-Task Training (Moderate Cognitive Impairment)","Participants with moderate cognitive impairment will receive sequential dual-task training, involving separate motor and cognitive task performance. The program duration is 8 weeks, with 3 weekly sessions of 45 minutes each.",[59],[65,70],{"type":66,"name":67,"description":68,"armGroupLabels":69,"otherNames":29},"BEHAVIORAL","Integrated Dual-Task Training","Participants will perform motor and cognitive tasks simultaneously (integrated dual-task training). The intervention includes balance and gait exercises combined with cognitive activities such as counting, memory, and executive function tasks. Training will be conducted for 8 weeks, 3 sessions per week, with each session lasting 45 minutes.",[46,52],{"type":66,"name":71,"description":72,"armGroupLabels":73,"otherNames":29},"Sequential Dual-Task Training","Participants will perform motor and cognitive tasks separately (sequential dual-task training). Motor exercises (balance, gait training) and cognitive tasks (memory, attention, executive function) will be administered in sequence. The intervention will last 8 weeks, with 3 sessions per week, each session lasting 45 minutes.",[56,61],[75],{"name":76,"affiliation":5,"role":77},"Brig. Dr. Aamir Waheed Butt","PRINCIPAL_INVESTIGATOR",[79,84],{"name":80,"role":81,"phone":82,"phoneExt":29,"email":83},"Soha Zafar","CONTACT","+92-331-3694949","sohazafar853@gmail.com",{"name":85,"role":81,"phone":86,"phoneExt":29,"email":87},"Fouzia Batool","+92-332-7120385","fouzia_dpt.ahs@stmu.edu.pk",[89],{"facility":90,"status":91,"city":92,"state":92,"zip":93,"country":94,"countryCode":95,"cosmosGeoPoint":96,"geoPoint":101,"contacts":102},"PIMS Hospital Islamabad","RECRUITING","Islamabad","44000","Pakistan","PK",{"type":97,"coordinates":98},"Point",[99,100],73.04329,33.72148,{"lat":100,"lon":99},[103,107,109],{"name":104,"role":81,"phone":105,"phoneExt":29,"email":106},"Dr Mansoor Iqbal, FCPS Neurology","+92-333-5547069","drmansooriqbalch@gmail.com",{"name":108,"role":77,"phone":29,"phoneExt":29,"email":29},"Brig. Dr. Aamir Waheed Butt, Rehab Medicine Specialist",{"name":110,"role":111,"phone":29,"phoneExt":29,"email":29},"Fouzia Batool, BSPT, PP-DPT, PGD (TM & PE),","SUB_INVESTIGATOR",{"type":77,"investigatorFullName":85,"investigatorTitle":113,"investigatorAffiliation":5,"oldNameTitle":29,"oldOrganization":29},"Assistant Professor","100652741","comparative-effects-of-integrated-versus-sequential-approaches-to-dual-task-training-in-elderly-with-mild-to-moderate-cognitive-impairment-a-four-arm-randomized-controlled-trial-100652741",false,"NCT07775079","Comparative Effects of Integrated Versus Sequential Approaches to Dual-Task Training in Elderly With Mild to Moderate Cognitive Impairment","Comparative Effects of Integrated Versus Sequential Approaches to Dual-Task Training in Elderly With Mild to Moderate Cognitive Impairment: A Four-Arm Randomized Controlled Trial","nill","Inclusion Criteria:\n\n* Age \\> 55 years\n* MoCA: 10-25\n* MMSE: 10-23\n* Diagnosed cognitive impairment\n* Able to participate in training\n\nExclusion Criteria:\n\n* Severe cognitive impairment\n* Severe physical sensory limitations\n* Unstable medical conditions\n* Participation in other trials",true,"ALL","55 Months","85 Months",{"count":127,"type":128},96,"ESTIMATED","INTERVENTIONAL",[131],"NA","Mild and Moderate cognitive impairment is a condition characterized by a noticeable decline in cognitive abilities, including memory and thinking skills, which is greater than expected for an individual's age but does not significantly interfere with daily life. Early intervention is essential to prevent further cognitive decline and progression to dementia.\n\nDual-task training has emerged as an effective rehabilitation approach that combines cognitive and motor tasks to enhance neuroplasticity and improve both physical and cognitive performance. This study is designed to investigate the effectiveness of dual-task training compared to conventional therapy in individuals with mild cognitive impairment.\n\nParticipants meeting the inclusion criteria will be recruited and randomly allocated into intervention and control groups. The intervention group will receive structured dual-task training, which may include activities such as walking while performing cognitive tasks (e.g., counting, word recall), balance exercises combined with mental tasks, and functional activities requiring divided attention. The control group will receive standard rehabilitation or single-task training.\n\nThe intervention will be conducted over a specified duration (e.g., several weeks), with sessions held multiple times per week. Outcome measures will be assessed at baseline and after completion of the intervention. The primary outcome will be cognitive function measured using the Mini-Mental State Examination (MMSE). Secondary outcomes may include balance, mobility, and functional performance.\n\nData will be analyzed to determine the effectiveness of dual-task training in improving cognitive and functional outcomes. The results of this study may contribute to evidence-based rehabilitation practices and support the use of dual-task interventions in clinical settings.",[134,135],"Mild Cognitive Impairment (MCI)","Moderate Cognitive Impairment",[137,138,139,140,141,142,143,144],"Dual-task training","Cognitive Function","Rehabilitation","MMSE","MoCA","Balance training","Integrated training","Sequential training","2026-08-19",{"date":147,"type":148},"2026-08-21","ACTUAL",{"date":150,"type":148},"2026-06-25",{"date":152,"type":128},"2026-08-30",{"name":5,"class":6},1]