[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"health-studies-list:{\"overallStatus\":[\"RECRUITING\",\"AVAILABLE\",\"NOT_YET_RECRUITING\"],\"leadSponsorName\":\"National Taiwan Normal University\",\"orderBy\":\"LastUpdateSubmitDate:desc\",\"size\":25,\"offset\":0}":3,"health-study-condition:":287},{"pageToken":4,"total":5,"offset":6,"count":5,"results":7},null,11,0,[8,44,75,99,121,145,169,190,213,236,261],{"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":31,"whyStopped":4,"lastUpdateSubmitDate":32,"lastUpdatePostDateStruct":33,"startDateStruct":36,"completionDateStruct":38,"leadSponsor":40,"locationsCount":43},"100627083","effect-of-resistance-exercise-on-energy-balance-and-appetite-regulation-in-males-and-females-100627083",false,"NCT07444021","Effect of Resistance Exercise on Energy Balance and Appetite Regulation in Males and Females","Inclusion Criteria:\n\n* Healthy males and females aged 20-30 years\n* Females with a regular menstrual cycle\n* Stable body weight, defined as no significant change in body weight during the past 6 months\n* Willingness to participate and provide written informed consent\n\nExclusion Criteria:\n\n* Obesity, defined as:\n* Body mass index (BMI) \\> 30 kg\u002Fm²\n* Body fat percentage \\> 25% in males\n* Body fat percentage \\> 30% in females\n* Hypertension, defined as resting blood pressure \\> 140\u002F90 mmHg\n* History of cardiovascular disease\n* History of cancer\n* History of liver disease\n* History of kidney disease\n* Presence of any medical condition that may interfere with study outcomes",true,"ALL","20 Years","30 Years",{"count":20,"type":21},30,"ESTIMATED","INTERVENTIONAL",[24],"NA","There is growing evidence that males and females may exhibit different acute responses and long-term adaptations to exercise training. Accordingly, contemporary exercise physiology research increasingly recognizes sex as an important biological variable that may influence appetite regulation and energy balance.\n\nThis year's project aims to investigate: (1) appetite regulation and energy balance following acute resistance exercise, and (2) potential sex-based differences in appetite regulation and energy balance in response to resistance exercise.\n\nUnderstanding both the overall effects of resistance exercise and sex-related variability in these responses is important for improving the physiological interpretation of exercise-induced changes in appetite and energy balance. Such knowledge may help to reduce heterogeneity in exercise research findings and support the development of more precise, evidence-based exercise prescriptions that are applicable to both males and females.",[27,28,29,30],"Energy Balance","Energy Expenditure","Males and Females","Resistance Exercise","RECRUITING","2026-02-25",{"date":34,"type":35},"2026-03-02","ACTUAL",{"date":37,"type":35},"2025-12-01",{"date":39,"type":21},"2026-12-30",{"name":41,"class":42},"National Taiwan Normal University","OTHER",1,{"id":45,"slug":46,"hasResults":11,"nctId":47,"briefTitle":48,"officialTitle":49,"acronym":4,"eligibilityCriteria":50,"healthyVolunteers":15,"sex":51,"minAge":17,"maxAge":52,"enrollmentInfo":53,"targetDuration":4,"studyType":22,"phases":55,"briefSummary":56,"conditions":57,"keywords":61,"overallStatus":66,"whyStopped":4,"lastUpdateSubmitDate":67,"lastUpdatePostDateStruct":68,"startDateStruct":70,"completionDateStruct":72,"leadSponsor":74,"locationsCount":4},"100623994","effects-of-acute-sleep-deprivation-on-health-100623994","NCT07403864","Effects of Acute Sleep Deprivation on Health","Effects of Acute Partial Sleep Deprivation on Metabolic Health and Cognitive Function","Inclusion Criteria:\n\n* Age between 20-45 years.\n* Body Mass Index (BMI) between 18.5-27 kg\u002Fm².\n* No sleep-related medical conditions and good sleep quality, defined as a Pittsburgh Sleep Quality Index (PSQI) score ≤ 5.\n* Usual bedtime between 22:00-01:00, wake-up time between 06:00-09:00, with an average sleep duration of 7 to 9 hours; chronotype classified as \"definitely not evening type\" (score ≥ 42 on the Morningness-Eveningness Questionnaire), and no changes in sleep patterns over the past 3 months.\n* Without any metabolic or cardiovascular diseases, and not using medications that could affect metabolic responses.\n* No specific dietary habits, such as intermittent fasting or a ketogenic diet.\n* Maintaining a stable weight (no self-reported weight change ± 3 kg) for at least 3 months.\n* Resting blood pressure ≤ 130\u002F80 mmHg.\n* No smoking or excessive alcohol consumption.\n* Not a shift worker.\n* No international travel across time zones has occurred within the past 3 months.\n\nExclusion Criteria:\n\n* Special diets (e.g., intermittent fasting, ketogenic diet)\n* Recent injuries or contraindications to intense exercise.","MALE","45 Years",{"count":54,"type":21},48,[24],"This study will investigate whether various types of regular exercise can provide protective effects against metabolic abnormalities induced by sleep restriction. It will examine responses related to metabolic health, cognitive function, energy expenditure, subjective feelings, and human behaviors, including physical activity and energy intake.",[58,28,59,60],"Glucose Intolerance","Vascular Stiffness","Cognition",[62,63,64,65],"Partial sleep deprivation","Sleep loss","Physical inactivity","Exercise habits","NOT_YET_RECRUITING","2026-02-04",{"date":69,"type":35},"2026-02-11",{"date":71,"type":21},"2026-03-01",{"date":73,"type":21},"2027-03-01",{"name":41,"class":42},{"id":76,"slug":77,"hasResults":11,"nctId":78,"briefTitle":79,"officialTitle":80,"acronym":4,"eligibilityCriteria":81,"healthyVolunteers":15,"sex":51,"minAge":17,"maxAge":52,"enrollmentInfo":82,"targetDuration":4,"studyType":22,"phases":83,"briefSummary":84,"conditions":85,"keywords":90,"overallStatus":66,"whyStopped":4,"lastUpdateSubmitDate":67,"lastUpdatePostDateStruct":94,"startDateStruct":96,"completionDateStruct":97,"leadSponsor":98,"locationsCount":4},"100623205","effects-of-acute-sleep-deprivation-on-human-behaviours-100623205","NCT07393607","Effects of Acute Sleep Deprivation on Human Behaviours","Acute Effects of Partial Sleep Deprivation on Appetite, Energy Intake and Physical Activity","Inclusion Criteria:\n\n* Age between 20 and 45 years.\n* Body Mass Index (BMI) between 18.5 to 27 kg\u002Fm².\n* No sleep-related medical conditions and good sleep quality, defined as a Pittsburgh Sleep Quality Index (PSQI) score ≤ 5.\n* Usual bedtime between 22:00 and 01:00, wake-up time between 06:00 and 09:00, with an average sleep duration of 7 to 9 hours. Chronotype classified as \"definitely not evening type\" (score ≥ 42 on the Morningness-Eveningness Questionnaire), with no changes in sleep patterns over the past 3 months.\n* Without any metabolic or cardiovascular diseases, and not using medications that could affect metabolic responses.\n* No specific dietary habits, such as intermittent fasting or a ketogenic diet.\n* Maintaining a stable weight (no self-reported weight change greater than ±3 kg) for at least 3 months.\n* Resting blood pressure ≤ 130\u002F80 mmHg.\n* No smoking or excessive alcohol consumption.\n* Not a shift worker.\n* No international travel across time zones in the past 3 months.\n\nExclusion Criteria:\n\n* Special diets (e.g., intermittent fasting, ketogenic diet)\n* Recent injuries or contraindications to intense exercise.",{"count":54,"type":21},[24],"This study will investigate whether acute sleep deprivation affects appetite, eating behavior, and physical activity in both regular exercisers and physically inactive individuals.",[86,87,88,89],"Physical Activity","Energy Intake","Appetite","Food Choice",[91,92,88,93],"Physical activity","Energy intake","Food choice",{"date":95,"type":35},"2026-02-06",{"date":71,"type":21},{"date":73,"type":21},{"name":41,"class":42},{"id":100,"slug":101,"hasResults":11,"nctId":102,"briefTitle":103,"officialTitle":104,"acronym":4,"eligibilityCriteria":105,"healthyVolunteers":15,"sex":16,"minAge":17,"maxAge":52,"enrollmentInfo":106,"targetDuration":4,"studyType":22,"phases":107,"briefSummary":108,"conditions":109,"keywords":112,"overallStatus":66,"whyStopped":4,"lastUpdateSubmitDate":67,"lastUpdatePostDateStruct":116,"startDateStruct":117,"completionDateStruct":118,"leadSponsor":120,"locationsCount":4},"100600260","effects-of-inspiratory-muscle-exercise-on-health-100600260","NCT07095179","Effects of Inspiratory Muscle Exercise on Health","Acute Effects of Intermittent Inspiratory Muscle Training on Blood Glucose and Vascular Function Responses","Inclusion Criteria\n\n* Healthy adults, obese adults and adults with type 2 diabetes\n* Aged between 20 to 45 years\n* Weight stable for more than 3 months (no change in weight +\u002F- 3%)\n* Non-smoker\n* Non-highly trained athletic team members\n* Normal lifestyle patterns\n\nExclusion Criteria\n\n* Personal history of\u002Fexisting hypertension, respiratory infectious disease, cardiovascular disease, metabolic disease\n* Taking medications that may influence lipid or carbohydrate metabolism or immune system function",{"count":54,"type":21},[24],"The purpose of this study is to investigate whether inspiratory muscle training has an immediate effect on energy expenditure, heart rate, blood glucose, blood pressure, and arterial stiffness in healthy adults, obese adults, and adults with type 2 diabetes.",[110,111],"Intermittent Inspiratory Muscle Training","Eupnea",[28,113,114,115],"Metabolic Health","Pulse Wave Velocity","Inspiratory muscle training",{"date":95,"type":35},{"date":71,"type":21},{"date":119,"type":21},"2027-08-01",{"name":41,"class":42},{"id":122,"slug":123,"hasResults":11,"nctId":124,"briefTitle":125,"officialTitle":126,"acronym":4,"eligibilityCriteria":127,"healthyVolunteers":15,"sex":51,"minAge":17,"maxAge":52,"enrollmentInfo":128,"targetDuration":4,"studyType":22,"phases":130,"briefSummary":131,"conditions":132,"keywords":134,"overallStatus":31,"whyStopped":4,"lastUpdateSubmitDate":137,"lastUpdatePostDateStruct":138,"startDateStruct":140,"completionDateStruct":142,"leadSponsor":144,"locationsCount":43},"100590068","effects-of-intermittent-running-on-metabolic-health-100590068","NCT06962605","Effects of Intermittent Running on Metabolic Health","Acute Effects of Intermittent vs. Continuous Running Exercise on Physiological and Metabolic Responses","Inclusion Criteria:\n\n* Healthy recreationally active men\n* BMI between 18.5-27 kg\u002Fm2\n* Aged between 20 to 45 years\n* Regular exercise (3 times per week and longer than 3 months) with cardio exercise longer than 30 minutes at least once a week\n* Weight stable for more than 3 months (no change in weight +\u002F- 3%)\n* Non-shift workers and sleep at least 6.5-9 hours for the past 3 months\n* Non-smoker\n\nExclusion Criteria:\n\n* having any cardiovascular, metabolic or pulmonary disease (angina pectoris or uncontrolled arrhythmias)\n* suffering from infectious contagious diseases,\n* using medications that could affect metabolic responses (including anti-inflammatory medications)\n* smoking\n* heavy alcohol intake (more than 4 drinks on any day or more than 14 drinks a week).\n* undergoing special diets (e.g., intermittent fasting and\u002For ketogenic diets)",{"count":129,"type":21},16,[24],"The purpose of this study is to investigate the suitability of intermittent exercise of long and short intervals at lower intensities than HIIE on energy expenditure during and post-exercise compared to MICE, as well as determine whether similar or greater effects can be achieved for glycemic control in recreationally active adults.",[133,28],"Metabolic Regulation",[135,136],"Intermittent running","Energy expenditure","2026-01-23",{"date":139,"type":35},"2026-01-26",{"date":141,"type":35},"2025-06-21",{"date":143,"type":21},"2026-04-30",{"name":41,"class":42},{"id":146,"slug":147,"hasResults":11,"nctId":148,"briefTitle":149,"officialTitle":150,"acronym":4,"eligibilityCriteria":151,"healthyVolunteers":15,"sex":16,"minAge":17,"maxAge":152,"enrollmentInfo":153,"targetDuration":4,"studyType":22,"phases":155,"briefSummary":156,"conditions":157,"keywords":159,"overallStatus":31,"whyStopped":4,"lastUpdateSubmitDate":162,"lastUpdatePostDateStruct":163,"startDateStruct":164,"completionDateStruct":166,"leadSponsor":168,"locationsCount":43},"100601368","impact-of-dinner-timing-on-human-behaviours-and-health-100601368","NCT07109583","Impact of Dinner Timing on Human Behaviours and Health","Effects of Dinner Timing on Eating Behaviour, Physical Activity and Metabolic Health","Inclusion Criteria:\n\n* No regular exerciser in the last 3 months.\n* BMI between 18.5-27 kg\u002Fm².\n* Regular habit of eating three meals per day, with dinner consumed between 17:00 and 20:00.\n* No intentional weight change (\\>3%) in the past 3 months.\n* No special dietary practices (e.g., intermittent fasting).\n* Regular sleep (22:00-01:00), at least 6.5 hours per night.\n* Non-smoker and non-alcoholic.\n* Willing to maintain stable lifestyle and comply with protocol.\n\nExclusion Criteria:\n\n* Pregnancy, preparing for pregnancy or menopause.\n* Personal history of\u002Fexisting diabetes, cardiovascular disease or metabolic diseases.\n* Diagnosed sleep disorders.\n* Taking medications influencing glucose metabolism.","50 Years",{"count":154,"type":21},20,[24],"The aim of this project is to investigate the impact of dinner timing on eating behaviors, physical activity and metabolic healthy in healthy adults",[158],"Delayed Dinner Intervention",[160,91,161],"Eating behaviour","Metabolic health","2026-01-22",{"date":137,"type":35},{"date":165,"type":35},"2025-08-20",{"date":167,"type":21},"2026-07-01",{"name":41,"class":42},{"id":170,"slug":171,"hasResults":11,"nctId":172,"briefTitle":173,"officialTitle":174,"acronym":4,"eligibilityCriteria":175,"healthyVolunteers":11,"sex":16,"minAge":176,"maxAge":4,"enrollmentInfo":177,"targetDuration":4,"studyType":22,"phases":178,"briefSummary":179,"conditions":180,"keywords":4,"overallStatus":31,"whyStopped":4,"lastUpdateSubmitDate":182,"lastUpdatePostDateStruct":183,"startDateStruct":185,"completionDateStruct":187,"leadSponsor":189,"locationsCount":43},"100616974","using-the-line-online-platform-to-follow-up-on-illegal-drug-use-among-college-and-university-students-100616974","NCT07312591","Using the LINE@ Online Platform to Follow Up on Illegal Drug Use Among College and University Students","Using Line@ Online Platform to Follow up on Counseling Intervention Effectiveness for Illegal Drug Use Among College and University Students","Inclusion Criteria:\n\n* College students with a history of illegal drug use (confirmed by urine screening or other methods, such as self-reported use, curiosity-driven misuse, or accidental use)\n\nExclusion Criteria:\n\n* Younger than 18 years old","18 Years",{"count":20,"type":21},[24],"This study developed a LINE@ online platform for tracking college and university students involved in illegal drug use, with the aim of evaluating the effectiveness of the intervention.",[181],"Illegal Drug Use","2025-12-16",{"date":184,"type":35},"2025-12-31",{"date":186,"type":35},"2025-09-01",{"date":188,"type":21},"2026-06",{"name":41,"class":42},{"id":191,"slug":192,"hasResults":11,"nctId":193,"briefTitle":194,"officialTitle":194,"acronym":4,"eligibilityCriteria":195,"healthyVolunteers":15,"sex":16,"minAge":152,"maxAge":196,"enrollmentInfo":197,"targetDuration":4,"studyType":199,"phases":4,"briefSummary":200,"conditions":201,"keywords":4,"overallStatus":31,"whyStopped":4,"lastUpdateSubmitDate":205,"lastUpdatePostDateStruct":206,"startDateStruct":208,"completionDateStruct":210,"leadSponsor":212,"locationsCount":43},"100599190","physical-fitness-and-hot-executive-function-in-alzheimers-risk-100599190","NCT07081269","Physical Fitness and Hot Executive Function in Alzheimer's Risk","Inclusion Criteria:\n\n* Age 50-70.\n* Able to engage in fitness testing.\n* Normal vision or corrected-to-normal vision.\n\nExclusion Criteria:\n\n* Suffering from cardiopulmonary-related diseases.\n* Suffering from cognitive, neurological or psychiatric disorders (e.g., dementia, Parkinson's disease, epilepsy, depression, schizophrenia, etc.).\n* Suffering from infectious diseases (e.g., hepatitis, human immunodeficiency virus or Creutzfeldt-Jakob disease).\n* Having a history of drug or alcohol abuse.\n* Having colour vision deficiency (e.g., colour blindness).\n* Having a family history of aneurysm.\n* Taking medications that affect brain function.","70 Years",{"count":198,"type":21},240,"OBSERVATIONAL","This 18-month study tracks how physical fitness relates to executive function in older adults, aiming to determine if fitness improvements predict better cognitive performance. Participants complete assessments at baseline and 18 months, including cardiorespiratory fitness (YMCA bike test), muscle strength (chest and leg press tests), and executive function (computer tasks with brain activity recording via EEG). Additional measures include physical activity questionnaires, cognitive screening (MMSE), memory tests (digit span), demographics (age, sex, education), and blood tests for APOE ε4 gene status. No exercise program will be provided, allowing observation of natural fitness-cognition relationships in daily life.",[202,203,204],"Executive Function (Cognition)","Event-Related Potentials","Physical Fitness","2025-07-15",{"date":207,"type":35},"2025-07-23",{"date":209,"type":35},"2025-01-10",{"date":211,"type":21},"2027-07-31",{"name":41,"class":42},{"id":214,"slug":215,"hasResults":11,"nctId":216,"briefTitle":217,"officialTitle":218,"acronym":4,"eligibilityCriteria":219,"healthyVolunteers":15,"sex":16,"minAge":220,"maxAge":4,"enrollmentInfo":221,"targetDuration":4,"studyType":199,"phases":4,"briefSummary":223,"conditions":224,"keywords":4,"overallStatus":31,"whyStopped":4,"lastUpdateSubmitDate":228,"lastUpdatePostDateStruct":229,"startDateStruct":231,"completionDateStruct":233,"leadSponsor":235,"locationsCount":43},"100596676","health-related-physical-fitness-and-executive-function-in-older-adults-a-prospective-study-100596676","NCT07048561","Health-related Physical Fitness and Executive Function in Older Adults: A Prospective Study","Changes in Health-related Physical Fitness on the Behavioural and Electrophysiological Aspects of Cool and Hot Executive Function in Older Adults: A Prospective Study","Inclusion Criteria:\n\n* Age 65 or above.\n* Able to engage in fitness testing.\n* Normal vision or corrected-to-normal vision.\n\nExclusion Criteria:\n\n* Suffering from cardiopulmonary-related diseases.\n* Suffering from cognitive, neurological or psychiatric disorders (e.g., dementia, Parkinson's disease, epilepsy, depression, schizophrenia, etc.).\n* Suffering from infectious diseases (e.g., hepatitis, human immunodeficiency virus or Creutzfeldt-Jakob disease).\n* Having a history of drug or alcohol abuse.\n* Having colour vision deficiency (e.g., colour blindness).\n* Having a family history of aneurysm.\n* Taking medications that affect brain function.","65 Years",{"count":222,"type":21},200,"This study aims to explore the relationship between health-related physical fitness and behavioural and electrophysiological aspects of cool and hot executive function in older adults through a year prospective study design. The main questions it aims to answer whether changes in health-related physical fitness will positively predict changes in behavioural and electrophysiological aspects of cool and hot executive functions in older adults. The participants will be asked to complete pre-test, a one-year observation period, and post-test. Both pre- and post-tests will measure health-related physical fitness, executive function, and various demographic variables and covariates. Health-related physical fitness assessments include cardiorespiratory endurance (YMCA submaximal cycle test), muscular strength (grip strength, chest press, and leg press), muscular endurance (30-second chair stand, 30-second bicep curl), flexibility (range of motion), and balance (Balance Error Scoring System). Executive function will be measured using the Stroop test and emotional Stroop test, with concurrent EEG recording of brain activity. Demographic variables and covariates include sex, age, years of education, annual income, Pittsburgh Sleep Quality Index (PSQI), International Physical Activity Questionnaire (IPAQ) Taiwan short form, World Health Organisation Quality of Life Brief Assessment (WHOQOL-BREF) Taiwan version, Geriatric Depression Scale, Mini-Mental State Examination (MMSE), digit span tests, and step count recorded by mobile phones or watches over the previous month, resting heart rate, and resting blood pressure. No interventions will be conducted during the one-year observation period, maintaining participants' normal daily living conditions.",[225,226,202,227,203],"Older Adults (65 Years and Older)","Fitness Testing","Prospective Study","2025-06-29",{"date":230,"type":35},"2025-07-02",{"date":232,"type":35},"2025-06-01",{"date":234,"type":21},"2027-03-31",{"name":41,"class":42},{"id":237,"slug":238,"hasResults":11,"nctId":239,"briefTitle":240,"officialTitle":241,"acronym":4,"eligibilityCriteria":242,"healthyVolunteers":15,"sex":16,"minAge":17,"maxAge":152,"enrollmentInfo":243,"targetDuration":4,"studyType":22,"phases":244,"briefSummary":245,"conditions":246,"keywords":248,"overallStatus":31,"whyStopped":4,"lastUpdateSubmitDate":253,"lastUpdatePostDateStruct":254,"startDateStruct":256,"completionDateStruct":258,"leadSponsor":260,"locationsCount":43},"100590361","effects-of-different-timing-of-bodyweight-high-intensity-exercise-on-human-behaviours-100590361","NCT06966414","Effects of Different Timing of Bodyweight High-intensity Exercise on Human Behaviours","Effects of Bodyweight High-intensity Exercise at Different Times of Day on 72-hour Eating Behaviours and Physical Activity in Physically Inactive Adults","Inclusion Criteria:\n\n* Aged between 20 and 50 years, with a BMI ranging from 19 to 27 kg\u002Fm².\n* Classified as having \"low\" physical activity levels (750 Metabolic Equivalents \u002F week) according to the International Physical Activity Questionnaire (IPAQ).\n* Engaged in moderate-intensity exercise for no more than 3 days per week and less than 30 minutes per session in the 3 months preceding the study.\n* Maintained a stable body weight (± 3 kg) during the 3 months prior to the main experiment.\n* Not taking any medications, supplements, or vitamins that might affect food intake, appetite, physical activity, weight loss, or metabolism.\n* Free from cardiovascular and metabolic diseases.\n* Not pregnant or planning to become pregnant.\n* Not currently on a diet or undergoing any specific dietary interventions (e.g., intermittent fasting, ketogenic diet).\n* No injuries or surgical wounds preventing physical activity.\n* Regular sleep patterns, averaging 7-9 hours per night, with no shift work.\n* No habits of heavy alcohol consumption or smoking.\n\nExclusion Criteria:\n\n* Personal history of\u002Fexisting diabetes, cardiovascular disease, metabolic disease or dyslipidaemia.\n* Taking medications that may influence lipid or carbohydrate metabolism or immune system function.\n* Unable to take part in exercise for any reason (e.g., injury or disability) or a positive response to any questions on the Physical Activity Readiness questionnaire (PAR-Q).",{"count":154,"type":21},[24],"The purpose of this project is to investigate the effects of exercise at different times of day on 72-hour eating behaviour, physical activity and sedentary behaviour in physically inactive adults.",[86,87,247],"Sedentary Behavior",[249,250,251,252],"Timing of exercise","Morning exercise","Evening exercise","Behavioural compensation","2025-05-07",{"date":255,"type":35},"2025-05-11",{"date":257,"type":35},"2025-04-30",{"date":259,"type":21},"2026-04-24",{"name":41,"class":42},{"id":262,"slug":263,"hasResults":11,"nctId":264,"briefTitle":265,"officialTitle":266,"acronym":4,"eligibilityCriteria":267,"healthyVolunteers":15,"sex":51,"minAge":17,"maxAge":18,"enrollmentInfo":268,"targetDuration":4,"studyType":22,"phases":270,"briefSummary":271,"conditions":272,"keywords":276,"overallStatus":66,"whyStopped":4,"lastUpdateSubmitDate":279,"lastUpdatePostDateStruct":280,"startDateStruct":282,"completionDateStruct":284,"leadSponsor":286,"locationsCount":43},"100558300","timing-and-resistance-exercise-impact-on-eating-and-metabolism-100558300","NCT06549322","Timing and Resistance Exercise: Impact on Eating and Metabolism","The Efficacy of Exercise Timing - Effects of Resistance Exercise on Eating Behavior and Energy Metabolism","Inclusion Criteria:\n\n* Age: 20-30\n* weight stable for at least 6 months\n\nExclusion Criteria:\n\n* Obesity (BMI \\> 30 kg\u002Fm² or body fat percentage \\> 25%)\n* Hypertension (blood pressure over 140\u002F90 mmHg)\n* Heart disease\n* Cancer\n* Liver or kidney diseases\n* Any other conditions that could potentially influence the study's outcomes",{"count":269,"type":21},18,[24],"Exercise timing (morning or evening) for optimal weight control is a research topic urgently addressed by scholars in the relevant field. Due to the better control of energy metabolism and physical activity levels in the morning, existing research on resistance exercise and eating behavior primarily focuses on experiments conducted in the morning, with only one study in the afternoon. No research has yet compared the potential differences between morning and evening resistance exercise. A one-year study aims to investigate the impact of morning and evening resistance exercise on physiological metabolism and eating behavior. Eighteen healthy male participants will be randomly assigned to a crossover design study, including AM exercise, PM exercise, and control (rest condition) trials. Variables including subjective appetite, appetite hormones (ghrelin, peptide YY), food preferences, ad libitum eating, dietary records, energy expenditure, and PBMCs circadian rhythm genes will be measured. This preliminary study through a multidimensional observation, the results will contribute to understanding the potential differences and mechanisms of morning and evening resistance exercise on physiological metabolism and eating behavior. In practical applications, conducting resistance exercise in the evening or at night aligns better with current lifestyles. The findings of this study can support the optimization of exercise benefits by validating the choice of exercise timing.",[273,27,274,275],"Circadian Rhythm","Appetitive Behavior","Food Reward",[277,278],"resistance exercise","energy expenditure","2024-08-08",{"date":281,"type":35},"2024-08-12",{"date":283,"type":21},"2024-09-01",{"date":285,"type":21},"2025-12-30",{"name":41,"class":42},""]