[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"health-study-detail:100579462":3},{"organization":4,"armGroups":7,"interventions":22,"overallOfficials":28,"centralContacts":32,"locations":10,"responsibleParty":42,"collaborators":10,"id":45,"slug":46,"hasResults":47,"nctId":48,"briefTitle":49,"officialTitle":50,"acronym":10,"eligibilityCriteria":51,"healthyVolunteers":52,"sex":53,"minAge":54,"maxAge":55,"enrollmentInfo":56,"targetDuration":10,"studyType":59,"phases":10,"briefSummary":60,"conditions":61,"keywords":10,"overallStatus":63,"whyStopped":10,"lastUpdateSubmitDate":64,"lastUpdatePostDateStruct":65,"startDateStruct":68,"completionDateStruct":70,"leadSponsor":72,"locationsCount":10},{"fullName":5,"class":6},"Minia University","OTHER",[8,14,18],{"label":9,"type":10,"description":11,"interventionNames":12},"Group A",null,"received 4 L \u002Fmin oxygen flow rate.",[13],"Device: capnography",{"label":15,"type":10,"description":16,"interventionNames":17},"Group B","received 6 L \u002Fmin oxygen flow rate.",[13],{"label":19,"type":10,"description":20,"interventionNames":21},"Group C","received 8 L \u002Fmin oxygen flow rate.",[13],[23],{"type":24,"name":25,"description":26,"armGroupLabels":27,"otherNames":10},"DEVICE","capnography","measurment of end-tidal carbon dioxide",[9,15,19],[29],{"name":30,"affiliation":5,"role":31},"Marina A Karam Lemoun, Master","PRINCIPAL_INVESTIGATOR",[33,38],{"name":30,"role":34,"phone":35,"phoneExt":36,"email":37},"CONTACT","01030349115","+20","82400921@med.s-mu.edu.eg",{"name":39,"role":34,"phone":40,"phoneExt":36,"email":41},"Shimaa H Mohammed, MD","010 27026137","shimaa.hassan.mohamed@gmail.com",{"type":31,"investigatorFullName":43,"investigatorTitle":44,"investigatorAffiliation":5,"oldNameTitle":10,"oldOrganization":10},"Marina Adel Karam Lemoun","Principal Investigator Marina A. K. Lemoun","100579462","the-effect-of-oxygen-flow-rate-on-end-tidal-co2-during-deep-sedation-100579462",false,"NCT06824610","The Effect of Oxygen Flow Rate on End-tidal CO2 During Deep Sedation","The Effect of Different Oxygen Flow Rates on End-tidal Carbon Dioxide Monitoring During Procedural Sedation in Patients Undergoing Minor Gynaecological Procedures.","Inclusion Criteria:\n\n1. Patient aged 18-45 years\n2. ASA physical status l : ll\n3. Minor elective gynaecological procedures lasting less than 30 minutes ( D\\&C biopsy, hysteroscopic polypectomy and diagnostic hysteroscopy )\n\nExclusion Criteria:\n\n* We will exclude from the study patients with the following:\n\n  1. Patient refusal to participate in this study.\n  2. ASA lll or more.\n  3. Lengthy procedures taking more than 30 minutes\n  4. Contraindication for the use of laryngeal mask airway as ( pharyngeal pathology, risk of aspiration and airway obstruction below larynx)\n  5. BMI more than 35",true,"FEMALE","18 Years","45 Years",{"count":57,"type":58},120,"ESTIMATED","OBSERVATIONAL","This study aims to detect the effect of different O2 flow rates on end tidal carbon dioxide level in patients scheduled for minor gynaecological procedures under deep sedation using laryngeal mask airway.\n\n* Primary outcome was measuring end tidal carbon dioxide ( EtCO2 ) non invasively by laryngeal mask all through the procedure.\n* Secondary outcomes included peripheral O2 saturation, hemodynamics, time to recovery, total propofol dose, patients' satisfaction, sedation score, and complications.",[62],"Capnography","NOT_YET_RECRUITING","2025-02-12",{"date":66,"type":67},"2025-02-14","ACTUAL",{"date":69,"type":58},"2025-03-01",{"date":71,"type":58},"2025-09-20",{"name":5,"class":6}]