[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"health-study-detail:100649455":3},{"organization":4,"outcomesModule":7,"designInfo":27,"detailedDescription":34,"studyPopulation":26,"armGroups":35,"interventions":48,"overallOfficials":26,"centralContacts":57,"locations":63,"responsibleParty":93,"collaborators":26,"id":97,"slug":98,"hasResults":99,"nctId":100,"briefTitle":101,"officialTitle":102,"acronym":26,"eligibilityCriteria":103,"healthyVolunteers":104,"sex":105,"minAge":106,"maxAge":107,"enrollmentInfo":108,"targetDuration":26,"studyType":111,"phases":112,"briefSummary":114,"conditions":115,"keywords":118,"overallStatus":66,"whyStopped":26,"lastUpdateSubmitDate":124,"lastUpdatePostDateStruct":125,"startDateStruct":128,"completionDateStruct":130,"leadSponsor":132,"locationsCount":133},{"fullName":5,"class":6},"Cairo University","OTHER",{"primaryOutcomes":8,"secondaryOutcomes":13,"otherOutcomes":26},[9],{"measure":10,"description":11,"timeFrame":12},"Flat serve ball speed","Flat serve ball speed (km\u002Fh or mph), measured via radar gun (e.g., Stalker Pro II) or equivalent validated device, averaged across the best 5 of 10 flat serves hit into the deuce-side service box, measured at baseline (Week 0) and post-intervention (Week 12).","measured at baseline (Week 0) and post-intervention (Week 12).",[14,17,20,23],{"measure":15,"description":16,"timeFrame":12},"Serve accuracy","* Target-based scoring system: standardized service box divided into scoring zones (e.g., 5 concentric\u002Fquadrant zones worth 1-5 points); participant hits 10 flat serves aimed at a designated target zone (e.g., wide serve to deuce court corner); accuracy score = mean points across 10 serves.\n* Recorded simultaneously with ball speed trials (speed-accuracy trade-off examined as an exploratory outcome).",{"measure":18,"description":19,"timeFrame":12},"Total glenohumeral arc of rotation (TGAR)","● Passive internal rotation (IR) + external rotation (ER) range of motion measured via goniometry (or inclinometer) with scapula stabilized, participant supine, shoulder abducted to 90°, elbow flexed to 90°. TGAR = IR + ER (degrees). Measured bilaterally.",{"measure":21,"description":22,"timeFrame":12},"Shoulder rotational strength","● Peak IR and ER isometric or isokinetic torque (Nm), measured via hand-held dynamometer (standardized stabilization protocol) or isokinetic dynamometer (60°\u002Fsec and 180°\u002Fsec) if available, at 0° abduction. ER\u002FIR strength ratio calculated. Measured bilaterally.",{"measure":24,"description":25,"timeFrame":12},"Core strength\u002Fendurance","● McGill core endurance battery: trunk flexor endurance test (seconds), bilateral side-bridge\u002Fplank endurance test (seconds).",null,{"allocation":28,"interventionModel":29,"interventionModelDescription":26,"primaryPurpose":6,"observationalModel":26,"timePerspective":26,"maskingInfo":30},"RANDOMIZED","PARALLEL",{"masking":31,"maskingDescription":26,"whoMasked":32},"SINGLE",[33],"OUTCOMES_ASSESSOR","The kinetic chain model suggests that core musculature plays a crucial role in transferring energy from the lower body to the upper extremity during the tennis serve. However, evidence on the relationship between core strength and tennis serve (TS) ball speed and passive total glenohumeral arc of rotation (TGAR) remains inconsistent, warranting further investigation.\n\nIt is hypothesized that the addition of core muscle exercises to the training program would yield greater improvements in terms of tennis serve ball speed and TGAR when compared to a control group performing only shoulder exercises in tennis players.\n\nTennis players with at least 1-3 years of weekly tennis training will be included and allocated randomly into the control group (CG) and experimental group (EG). CG participants will perform shoulder exercises and sham core exercises. EG participants will receive the same training as CG in addition to performing core exercises. Both groups will participate in a 12-week intervention (2 sessions per week, 50 minutes per session). Pre- and postintervention assessments will include TS ball speed analysis and TGAR, respectively.",[36,42],{"label":37,"type":38,"description":39,"interventionNames":40},"Shoulder+ sham core","ACTIVE_COMPARATOR","Shoulder strengthening + sham\u002Fplacebo core exercises (non-loading trunk mobility).",[41],"Other: Shoulder Strengthening Program+ Sham core Treatment",{"label":43,"type":44,"description":45,"interventionNames":46},"shoulder strengthening exercises+ core strengthening","EXPERIMENTAL","Participants in EG performed the same shoulder strengthening exercises as in CG, coupled with a physical therapy core strengthening program.",[47],"Other: Shoulder Strengthening Program+ Core Strengthening Program",[49,53],{"type":6,"name":50,"description":51,"armGroupLabels":52,"otherNames":26},"Shoulder Strengthening Program+ Sham core Treatment","Delivered 2×\u002Fweek for 10 weeks under supervision of a licensed physical therapist or certified strength and conditioning specialist. Progressive resistance program including:\n\n* External\u002Finternal rotation strengthening (resistance band, cable, or dumbbell) at 0° and 90° abduction\n* Scapular stabilization exercises (rows, Y-T-W raises, serratus punch)\n* Posterior shoulder stretching (sleeper stretch, cross-body stretch) for the TGAR component\n* Progressive overload every 2 weeks based on tolerated resistance\u002Frepetitions\n\nSham :Low-intensity, non-progressive trunk mobility exercises with minimal loading (e.g., seated trunk rotations without resistance, cat-camel stretches), matched for session time and attention to control for non-specific training effects, without targeting core strength\u002Fendurance adaptation.",[37],{"type":6,"name":54,"description":55,"armGroupLabels":56,"otherNames":26},"Shoulder Strengthening Program+ Core Strengthening Program","Delivered 2×\u002Fweek for 10 weeks, same sessions as the shoulder program (combined \\~50-60 minute sessions), progressive core program including:\n\n* Anti-rotation exercises (Pallof press)\n* Rotational power exercises (medicine ball rotational throws, cable woodchoppers)\n* Anterior\u002Flateral\u002Fposterior chain stability (plank variations, side plank, bird-dog)\n* Progressive overload via increased resistance, hold time, or instability surface every 2 weeks",[43],[58],{"name":59,"role":60,"phone":61,"phoneExt":26,"email":62},"Ahmad El Melhat, PhD","CONTACT","+20 111 259 5022","a.melhat@bau.edu.lb",[64,79],{"facility":65,"status":66,"city":67,"state":67,"zip":68,"country":69,"countryCode":70,"cosmosGeoPoint":71,"geoPoint":76,"contacts":77},"Beirut Arab University","RECRUITING","Beirut","1100","Lebanon","LB",{"type":72,"coordinates":73},"Point",[74,75],35.50157,33.89332,{"lat":75,"lon":74},[78],{"name":59,"role":60,"phone":61,"phoneExt":26,"email":62},{"facility":80,"status":66,"city":67,"state":81,"zip":82,"country":69,"countryCode":70,"cosmosGeoPoint":83,"geoPoint":85,"contacts":86},"BAU activities","Giza","2356",{"type":72,"coordinates":84},[74,75],{"lat":75,"lon":74},[87,91],{"name":88,"role":60,"phone":89,"phoneExt":26,"email":90},"Ahmed El Melhat","01112595022","s.mohamad@bau.edu.lb",{"name":92,"role":60,"phone":26,"phoneExt":26,"email":26},"Ahmed ELMelhat, PhD",{"type":94,"investigatorFullName":95,"investigatorTitle":96,"investigatorAffiliation":5,"oldNameTitle":26,"oldOrganization":26},"PRINCIPAL_INVESTIGATOR","Ahmed ElMelhat","Assistant Professor","100649455","the-addition-of-core-muscle-training-on-tennis-serve-speed-in-tennis-players-100649455",false,"NCT07733869","The Addition of Core Muscle Training on Tennis Serve Speed in Tennis Players","The Effect of Adding Core Muscle Training With Shoulder Strengthening in Tennis Players: A Randomized Controlled Trial","Inclusion Criteria:\n\n* Healthy adults aged 18-35 years\n* Recreational to competitive non-professional tennis players (currently playing ≥2 sessions\u002Fweek for ≥1 year; NTRP 3.0-5.0 or equivalent ITN; no professional ranking or tour-level competition history)\n* Right- or left-hand dominant (serve arm recorded)\n* Able to perform a full flat serve without pain\n* Willing to maintain current tennis training routine and refrain from starting other new strength\u002Fconditioning programs during the study\n\nExclusion Criteria:\n\n* Current or history of shoulder pain\u002Finjury in the past 6 months (e.g., rotator cuff pathology, labral injury, impingement)\n* Low back pain or lumbar spine pathology in the past 6 months\n* Prior shoulder or spine surgery\n* Systemic conditions affecting neuromuscular function (e.g., uncontrolled diabetes, neurological disorders)\n* Pregnancy\n* Current participation in a structured core or shoulder strengthening program",true,"ALL","18 Years","35 Years",{"count":109,"type":110},120,"ESTIMATED","INTERVENTIONAL",[113],"NA","Compared with shoulder-only training and with continued tennis training alone, will the addition of core strengthening to shoulder training produce significantly greater improvements in flat serve ball speed in healthy tennis players?\n\nSecondary Hypothesis:\n\n* Combined core + shoulder training will produce greater improvement in serve accuracy than shoulder-only training or tennis training alone.\n* Combined core + shoulder training will produce greater improvement in TGAR than shoulder-only training or tennis training alone.\n* Combined core + shoulder training will produce greater improvement in core strength\u002Fendurance and shoulder rotational strength than the comparator groups.",[116,117],"Tennis","Tennis Serve Performance",[119,120,121,122,123],"Serve Speed","Core Training","Shoulder training","strengthening","total glenohumeral arc of rotation","2026-07-24",{"date":126,"type":127},"2026-07-29","ACTUAL",{"date":129,"type":127},"2026-06-15",{"date":131,"type":110},"2026-09-20",{"name":5,"class":6},2]