[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"health-study-detail:100538296":3},{"organization":4,"armGroups":7,"interventions":19,"overallOfficials":11,"centralContacts":27,"locations":11,"responsibleParty":37,"collaborators":11,"id":39,"slug":40,"hasResults":41,"nctId":42,"briefTitle":43,"officialTitle":44,"acronym":11,"eligibilityCriteria":45,"healthyVolunteers":41,"sex":46,"minAge":47,"maxAge":48,"enrollmentInfo":49,"targetDuration":11,"studyType":52,"phases":53,"briefSummary":55,"conditions":56,"keywords":11,"overallStatus":60,"whyStopped":11,"lastUpdateSubmitDate":61,"lastUpdatePostDateStruct":62,"startDateStruct":65,"completionDateStruct":66,"leadSponsor":68,"locationsCount":11},{"fullName":5,"class":6},"Nanfang Hospital, Southern Medical University","OTHER",[8,14],{"label":9,"type":10,"description":11,"interventionNames":12},"active rTMS","EXPERIMENTAL",null,[13],"Device: active rTMS",{"label":15,"type":16,"description":11,"interventionNames":17},"sham rTMS","SHAM_COMPARATOR",[18],"Device: sham rTMS",[20,24],{"type":21,"name":9,"description":22,"armGroupLabels":23,"otherNames":11},"DEVICE","The magnetic stimulation coil was tangent to the scalp and kept parallel for 10 minutes a day, 5 days a week for 4 weeks",[9],{"type":21,"name":15,"description":25,"armGroupLabels":26,"otherNames":11},"The magnetic stimulation coil was tangent to the scalp and kept perpendicular for 10 minutes a day, 5 days a week for 4 weeks",[15],[28,33],{"name":29,"role":30,"phone":31,"phoneExt":11,"email":32},"Jimin Zhang","CONTACT","02061642065","JiminZhang1@126.com",{"name":34,"role":30,"phone":35,"phoneExt":11,"email":36},"Gang Liu","02061642061","13580350999@126.com",{"type":38,"investigatorFullName":11,"investigatorTitle":11,"investigatorAffiliation":11,"oldNameTitle":11,"oldOrganization":11},"SPONSOR","100538296","effects-of-rtms-on-respiratory-function-and-gut-microbiota-in-patients-with-brain-injury-100538296",false,"NCT06288984","Effects of rTMS on Respiratory Function and Gut Microbiota in Patients With Brain Injury","Effects of Repetitive Transcranial Magnetic Stimulation(rTMS) on Respiratory Function and Gut Microbiota in Patients With Brain Injury","Inclusion Criteria:\n\n* In line with the diagnostic criteria of \"Chinese classification of cerebrovascular diseases(2015)\" mRS Score 2-4 points or craniocerebral injury caused by trauma, GCS score \\> 8 points\n* Between 18 and 70 years old\n* The first incidence of cerebrovascular disease or traumatic brain injury, and the course of disease was 10-180 days\n* Vital signs are stable, no progression\n* Voluntary participation with informed consent\n\nExclusion Criteria:\n\n* Patients with a history of respiratory disease, including chronic bronchitis, chronic obstructive pulmonary disease, bronchiectasis, and lung cancer\n* Severe bone malformations in the chest or spine\n* Have other neurological or neuromuscular disorders\n* History of thoracic and abdominal surgery\n* Severe heart, lung, kidney, liver or other organ dysfunction\n* Pregnant and lactating women\n* Epilepsy\n* Metal implant\n* Patients who were judged by the investigator to be unsuitable for participation in this trial","ALL","18 Years","70 Years",{"count":50,"type":51},74,"ESTIMATED","INTERVENTIONAL",[54],"NA","Impaired respiratory function may occur after brain injury, and will progress to restricted respiratory dysfunction without early intervention. At present, there is a lack of effective treatment options for respiratory dysfunction. Repetitive Transcranial Magnetic Stimulation(rTMS) is a non-invasive, painless and non-invasive neuroregulatory technique. In healthy people, rTMS applied to the respiratory motor cortex induces a contralateral respiratory muscle response. However, whether rTMS can improve respiratory function in patients with brain injury remains unclear. gut microbiota can affect muscle function and mass, and animal experiments have shown that probiotics can increase skeletal muscle mass and grip strength in mice. On the other hand, studies have found that rTMS can improve the nutritional status of patients with vegetative state by regulating the structure of gut microbiota. However, it remains unclear whether rTMS can improve respiratory muscle function in patients with brain injury by regulating gut microbiota. Therefore, the investigators intend to apply rTMS to the respiratory motor cortex to observe whether rTMS can improve respiratory function and reduce the incidence of pneumonia in patients with brain injury, and to observe the role of gut microbiota in this process.",[57,58,59],"Brain Injuries","Respiratory Function Impaired","Gut Microbiota","NOT_YET_RECRUITING","2024-02-25",{"date":63,"type":64},"2024-03-01","ACTUAL",{"date":63,"type":51},{"date":67,"type":51},"2026-12-31",{"name":5,"class":6}]