[{"data":1,"prerenderedAt":-1},["ShallowReactive",2],{"health-study-detail:100583101":3},{"organization":4,"armGroups":7,"interventions":14,"overallOfficials":21,"centralContacts":25,"locations":10,"responsibleParty":35,"collaborators":37,"id":40,"slug":41,"hasResults":42,"nctId":43,"briefTitle":44,"officialTitle":45,"acronym":46,"eligibilityCriteria":47,"healthyVolunteers":42,"sex":48,"minAge":49,"maxAge":10,"enrollmentInfo":50,"targetDuration":10,"studyType":53,"phases":10,"briefSummary":54,"conditions":55,"keywords":57,"overallStatus":61,"whyStopped":10,"lastUpdateSubmitDate":62,"lastUpdatePostDateStruct":63,"startDateStruct":66,"completionDateStruct":68,"leadSponsor":70,"locationsCount":10},{"fullName":5,"class":6},"Keele University","OTHER",[8],{"label":9,"type":10,"description":11,"interventionNames":12},"Myocardial Infraction",null,"Participants who have suffered a myocardial infraction in the past 6 months and are actively enrolled onto a cardiac rehabilitation programme",[13],"Other: Incremental Shuttle Walk Tests",[15],{"type":6,"name":16,"description":17,"armGroupLabels":18,"otherNames":19},"Incremental Shuttle Walk Tests","The participants will walk on the flat around cones placed 9 meters apart inline with the procedure for the incremental shuttle walk test. They will also walk at a matched speed to the incremental shuttle walk test on a treadmill. This will be performed in a counter balanced procedure to reduce any benefit of a learning effect.",[9],[20],"ISWT",[22],{"name":23,"affiliation":5,"role":24},"John Buckley, PhD","STUDY_CHAIR",[26,31],{"name":27,"role":28,"phone":29,"phoneExt":10,"email":30},"Sam Jones, MSc","CONTACT","+44 07841390625","s.jones3@keele.ac.uk",{"name":32,"role":28,"phone":33,"phoneExt":10,"email":34},"Dean Burt, PhD","+44 07967 581009","d.burt@keele.ac.uk",{"type":36,"investigatorFullName":10,"investigatorTitle":10,"investigatorAffiliation":10,"oldNameTitle":10,"oldOrganization":10},"SPONSOR",[38],{"name":39,"class":6},"University Hospitals of North Midlands NHS Trust","100583101","can-wearable-technology-be-used-to-predict-exercise-intensity-100583101",false,"NCT06871943","Can Wearable Technology be Used to Predict Exercise Intensity","Developing a Rationale for the Use of Breathing Frequency and Wearable Foot-pods to Measure Intensity in Cardiac Populations","(CWTPEI)","Inclusion Criteria:\n\n* Myocardial Infraction in the past 6 months\n* Able to walk on a treadmill\n* Aged ≥ 18\n\nExclusion Criteria:\n\n• Injury or condition that impedes normal gait","ALL","18 Years",{"count":51,"type":52},24,"ESTIMATED","OBSERVATIONAL","There is a knowledge gap in the literature around using watts to measure exercise intensity in walking and running, this is largely due to new technological developments. Whereas the relationship is widely recognised and used for cycling in elite to clinical populations.\n\nWhile the relationship breathing rate and exercise intensity is well established, this are no guidelines using breathing rate as a physiological measure of intensity. New technology may aid to bridge these gaps.\n\nThe main aims of the study are: -\n\nCan the relationship between oxygen uptake and watts during incremental exercise Can breathing frequency be used to determine aerobic exercise intensity\n\nThe participants will complete two 9 minute incremental accredited exercise tests on the flat around cones and on treadmill at the given speed of walking around the cones. The test will stop at 6.8kph or at participant volition.",[56],"Myocardial Infarction (MI)",[58,59,60],"aerobic capacity","breathing frequency","walking capacity","NOT_YET_RECRUITING","2026-06-09",{"date":64,"type":65},"2026-06-10","ACTUAL",{"date":67,"type":52},"2026-10-01",{"date":69,"type":52},"2027-06-30",{"name":5,"class":6}]