Remote-AS aims to develop a remote digital monitoring cohort of people with AS and use these data to establish a digital twin intervention to personalise risks and benefits, and optimise the time of surgical or transcatheter aortic valve replacement (AVR) referral. Our digital solution will also seek modelling for optimal care for patients to whom AVR is indicated who choose not to undergo the procedure, supporting a patient-selected observational strategy for managing heart failure symptoms, facilitating patient education and self-care. Objectives of the study are: * To establish a large-scale interdisciplinary research program to drive implementation of substantial improvements to health care and/or health system effectiveness in patients with aortic stenosis (AS) * To establish a new model of patient-centred management strategy for asymptomatic severe AS to inform the optimal time at which valve intervention should take place * For patients to whom AVR is indicated who choose not to undergo the procedure, to support a patient-selected observational strategy for managing heart failure symptoms * To develop a digital twin with predictive capabilities of artificial intelligence (AI) for guiding the optimal timing of AVR in patients with asymptomatic severe AS Participants will be patients with asymptomatic moderate to severe native AS (n=160) (based on guideline-recommended diagnosis and care with peak aortic velocity \>3.5m/sec). Participants will undergo: Wearables: collection of physiological (e.g., blood pressure, heart rate, rhythm) and behavioural (physical activity) data through a wearable device ('smart watch'), collected through the comprehensive remote heart health monitoring and automated feedback delivery system app SMART. Patient reported outcome measures: KCCQ-CSS; EQ-5D-5L index score; "Toronto Aortic Stenosis" quality of life questionnaires. Advanced cardiovascular imaging: Cardiovascular magnetic resonance (CMR) imaging; 31phosphorus magnetic resonance spectroscopy (31P-MRS); proton magnetic resonance spectroscopy (1H-MRS); echocardiography. Comprehensive plasma proteome profiling: Plasma proteomic preparation coupled with the Orbitrap Astral mass spectrometer. Recording of clinical outcomes.
Age range
18 Years
Sex
ALL
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The trial coordinator is the person who runs the study day to day. These cover the practical side — logistics, costs, and what taking part would actually mean for your life. The study team confirms whether you meet the criteria; these are questions to ask, not a sign you qualify.
A starting point for the conversation — always confirm anything about your own eligibility, costs, and care with the study team and your doctor.
LV hypertrophy
Timeframe: 6-monthly repeat assessments prior to AVR, with a concluding assessment 6 months after AVR
Diastolic function - Mitral inflow E/A ratio
Timeframe: 6-monthly repeat assessments prior to AVR, with a concluding assessment 6 months after AVR
Diastolic function - average E/e' ratio
Timeframe: 6-monthly repeat assessments prior to AVR, with a concluding assessment 6 months after AVR
Diastolic function - septal e' velocity
Timeframe: 6-monthly repeat assessments prior to AVR, with a concluding assessment 6 months after AVR
Diastolic function - lateral e' velocity
Timeframe: 6-monthly repeat assessments prior to AVR, with a concluding assessment 6 months after AVR
Diastolic function - left atrial volume index
Timeframe: 6-monthly repeat assessments prior to AVR, with a concluding assessment 6 months after AVR
Diastolic function - peak diastolic strain rate
Timeframe: 6-monthly repeat assessments prior to AVR, with a concluding assessment 6 months after AVR
Global longitudinal strain (GLS)
Timeframe: 6-monthly repeat assessments prior to AVR, with a concluding assessment 6 months after AVR
Myocardial perfusion
Timeframe: 6-monthly repeat assessments prior to AVR, with a concluding assessment 6 months after AVR
Myocardial energetics index
Timeframe: 6-monthly repeat assessments prior to AVR, with a concluding assessment 6 months after AVR
Myocardial triglyceride content
Timeframe: 6-monthly repeat assessments prior to AVR, with a concluding assessment 6 months after AVR
Myocardial fibrosis index - extra cellular volume [ECV] fraction
Timeframe: 6-monthly repeat assessments prior to AVR, with a concluding assessment 6 months after AVR
Myocardial fibrosis index - index-ECV
Timeframe: 6-monthly repeat assessments prior to AVR, with a concluding assessment 6 months after AVR
Myocardial fibrosis index - scar percentage
Timeframe: 6-monthly repeat assessments prior to AVR, with a concluding assessment 6 months after AVR