Peerbridge Health, Melbourne, Florida 32935
Melbourne, Florida, 32935, United States
NCT Number: NCT06763549
The COR-INSIGHT trial aims to evaluate the effectiveness of Peerbridge COR advanced ambulatory ECG wearables (COR 1.0 and COR 2.0) in accurately and non-invasively detecting cardiovascular and cardiopulmonary conditions using AI-based software (CardioMIND and CardioQSync). The study devices offer non-invasive, multiplexed, AI-enabled direct-from-ECG detection as a novel alternative to traditional diagnostic methods, including imaging, hemodynamic monitoring systems, catheter-based devices, and biochemical assays. Continuous COR ECG data collected in hospital, outpatient clinic, or home settings will be analyzed to evaluate the predictive accuracy, sensitivity, specificity, and performance of these devices in differentiating between screen-positive and screen-negative subjects.
The panel of screened indications encompasses a broad spectrum of clinically relevant cardiovascular, cardiopulmonary, and sleep-related diagnostic parameters, which are critical for advanced patient assessment and management. In the cardiovascular domain, the protocol emphasizes the detection and classification of heart failure, assessment of ejection fraction severity, and identification of myocardial infarction, including pathological Q-waves and STEMI. It further addresses diagnostic markers for arrhythmogenic conditions such as QT interval prolongation, T-wave alternans, and ventricular tachycardia, as well as insights into ischemia, atrial enlargement, ventricular activation time, and heart rate turbulence. Additional parameters, such as heart rate variability, pacing efficacy, electrolyte imbalances, and structural abnormalities, including left ventricular hypertrophy, contribute to comprehensive cardiovascular risk stratification.
In the non-invasive cardiopulmonary context, the protocol incorporates metrics like respiratory sinus arrhythmia, cardiac output, stroke volume, and stroke volume variability, providing critical insights into hemodynamic and autonomic function. The inclusion of direct-from-ECG metrics for sleep-related disorders, such as the apnea-hypopnea index, respiratory disturbance index, and oxygen saturation variability, underscores the protocol's utility in addressing the intersection of cardiopulmonary and sleep medicine. This multifaceted approach establishes a robust framework for precision diagnostics and holistic patient management.
The COR 1.0 and COR 2.0 wearables provide multi-lead ECG recordings, with COR 2.0 offering extended capabilities for cardiopulmonary metrics and longer battery life (up to 14 days). COR 2.0 supports tri-modal operations:
(i) Extended Holter Mode: Outputs Leads II and III, mirroring the functionality of COR 1.0 for broader ECG monitoring applications.
(ii) Cardiopulmonary Mode: Adds real-time recording of Lead I, V2, respiratory impedance, and triaxial accelerometer outputs, providing advanced cardiopulmonary insights.
(iii) Real-Time Streaming Mode: Streams data directly to mobile devices or computers via Bluetooth Low Energy (BLE), enabling real-time waveform rendering and analysis.
The COR 2.0 units are experimental and not yet FDA-cleared.
Primary endpoints include sensitivity (true positive rate) > 80%, specificity (true negative rate) > 90%, and statistical agreement with reference devices for cardiovascular, cardiopulmonary, and sleep metrics. Secondary endpoints focus on predictive values (PPV and NPV) and overall diagnostic performance. The study employs eight distinct sub-protocols (A through H) to address a variety of cardiovascular, cardiopulmonary, and sleep-related diagnostic goals. These sub-protocols are tailored to specific clinical endpoints, varying in duration (30 minutes to 14 days) and type of data collection. Up to 15,000 participants will be enrolled across multiple sub-protocols. Screening ensures eligibility, and subjects must provide informed consent before participation. Dropouts and non-compliant subjects will be excluded from final analyses.
Interested in participating?
Request Info18 year and older
All sexes
Observational
Melbourne, Florida, 32935, United States
The COR-INSIGHT trial is a clinical study designed to evaluate the effectiveness of Peerbridge COR ambulatory ECG wearables, COR 1.0 and COR 2.0 ("CORMDX"). These devices integrate advanced AI technologies, including CardioMIND and CardioQSync, to accurately detect a broad spectrum of cardiovascular and cardiopulmonary conditions. By offering multiplexed diagnostics via direct-from-ECG analysis, the trial seeks to validate an alternative to traditional diagnostic modalities such as imaging, catheter-based techniques, and biochemical assays.
COR-INSIGHT study is validating a comprehensive, non-invasive screening framework designed to benefit cardiac patients, including those who are asymptomatic, critically ill, or awaiting procedures such as ablation, transcatheter aortic valve replacement (TAVR), transcatheter aortic valve implantation (TAVI), or implantable cardioverter defibrillator (ICD) placement. Additionally, the protocol addresses the needs of patients with cardiopulmonary conditions, offering precise diagnostics and remote monitoring capabilities in hospital, outpatient, and home-based environments.
Objectives
The COR-INSIGHT trial is structured around clearly defined objectives aimed at demonstrating the clinical efficacy and utility of COR wearable ECG:
Device Features
COR 1.0: delivers 3-lead, 2-channel ECG monitoring with high diagnostic fidelity with continuous data acquisition for up to 7 days, optimizing mid-term diagnostic applications.
COR 2.0:
i. Extended Holter Mode: Outputs Leads II and III for standard ECG analysis.
ii. Cardiopulmonary Mode: Outputs Leads I, II, III and V2, respiratory impedance, and triaxial accelerometer data for comprehensive evaluations.
iii. Real-Time Streaming Mode: Enables seamless Lead I, II, III, V2 and accelerometer data transmission via Bluetooth Low Energy (BLE) for immediate waveform rendering and remote analysis.
Study Design
The trial employs a prospective, cross-sectional design encompassing eight distinct sub-protocols (A-H), tailored to address diverse clinical indications:
Key Indications and Metrics
An indication panel report will be provided to the subject's clinician or care-team, summarizing how the subject is risk-stratified on the panel. The panels of indications will vary depending on the Subprotocol a subject is placed in. COR-INSIGHT report will display whether a patient is predicted to be at risk or negative for each indication.
Cardiovascular Diagnostics
Cardiopulmonary Metrics
Sleep-Related Metrics
Data Collection and Analysis
Participant Enrollment
The study will enroll up to 15,000 participants across diverse demographic and clinical backgrounds. Inclusion criteria prioritize patients with potential cardiovascular or cardiopulmonary conditions. Key aspects of participant management include:
Safety and Ethical Considerations
The trial adheres to stringent ethical and safety standards:
Primary and Secondary Endpoints
Clinical Impact
The COR-INSIGHT trial seeks to establish a validated framework for diagnosing cardiovascular and cardiopulmonary conditions using wearable ECG technology. Specific objectives include:
The COR-INSIGHT trial provides a comprehensive, non-invasive diagnostic and screening framework designed to benefit cardiac patients, including those who are asymptomatic, critically ill, or awaiting procedures such as ablation, transcatheter aortic valve replacement (TAVR), transcatheter aortic valve implantation (TAVI), or implantable cardioverter defibrillator (ICD) placement. Additionally, the protocol addresses the needs of patients with cardiopulmonary conditions.
Benefits for Asymptomatic Cardiac Patients
Benefits for Critically Ill Cardiac Patients
Benefits for Patients Awaiting Procedures
o The protocol evaluates ejection fraction severity, arrhythmogenic risks, and cardiac output parameters, enabling comprehensive pre-procedural risk assessments. These data inform clinical decision-making for patients awaiting procedures such as ablation, TAVR, TAVI, or ICD placement, ensuring optimized intervention timing and reduced perioperative risks.
o Patients awaiting procedures benefit from real-time monitoring of cardiac electrical and hemodynamic stability. This enables clinicians to detect emergent arrhythmias, ischemic events, or heart failure exacerbations that may necessitate changes in medical management or expedited scheduling.
Benefits for Patients with Cardiopulmonary Conditions
o The protocol integrates cardiac output, respiratory sinus arrhythmia, and stroke volume variability to provide actionable insights into conditions like chronic obstructive pulmonary disease (COPD), pulmonary hypertension, and interstitial lung disease (ILD).
o For acute conditions like acute respiratory distress syndrome (ARDS) and pulmonary embolism, COR devices enable fluid optimization and right ventricular function assessment to guide therapy.
The COR-INSIGHT is aimed at demonstrating and validating transformative benefits for cardiac patients across the spectrum of asymptomatic individuals, critically ill patients, and those awaiting procedures.
Healthy volunteers accepted: Yes
Only the study team can determine whether someone qualifies for participation.
Inclusion criteria
Exclusion criteria
A 30-minute COR ECG recording will be performed, including 15 minutes of continuous sitting data used for clinical indication analysis through CardioMIND software. Data collection can occur in-clinic, via PHS, or using a shipped device with telehealth support. Sleep, HRV, and AFIB risk analysis will not be included.
Subjects will undergo 24 hours of COR ECG recording, which must include at least one 15-minute unsupervised sitting session. Data analysis will include sleep patterns, HRV, and AFIB risk. ECG acquisition may take place in-clinic, via Patient Home Setup (PHS), or with a shipped device.
COR 1.0 ECG recordings will be conducted over 2 to 7 days, with at least one 15-minute unsupervised sitting session. At least 25% of randomly selected trial participants subjects will also wear a cleared wrist or finger device to track SpO2 during sleep. PI or Sub-Investigator will assign the number of wear days to the subject. The analysis will include sleep data, HRV, and AFIB risk assessment.
COR 2.0 (CORMDX) recordings will be conducted over 2 to 14 days, with at least one 15-minute unsupervised sitting session. At least 25% of randomly selected trial participants will also wear a cleared wrist or finger device to track SpO2 during sleep nights. PI or Sub-Investigator will assign the number of wear days to the subject. The analysis will include sleep data, HRV, and AFIB risk assessment.
Subjects will complete a 30-minute CORMDx (COR 2.0) ECG recording, with 15 minutes of continuous sitting data used for clinical indication analysis. Sleep, HRV, and AFIB risk analysis will not be performed.
A 30-minute COR 2.0 ECG recording will be completed, along with a 12-lead resting ECG using an FDA-cleared reference device. Sleep, HRV, and AFIB analysis will not be performed.
A 40-minute COR 2.0 recording will be conducted in two phases: 15 minutes of upright sitting and 15 minutes in a supine position. Hemodynamic monitoring, including blood pressure, cardiac output, and stroke volume variation, will be conducted using an FDA-cleared reference device. No sleep, HRV, or AFIB analysis will be performed.
Subjects will undergo a 40-minute COR 2.0 recording, followed by a 40-minute COR 1.0 recording. Hemodynamic monitoring using an FDA-cleared reference device will be performed during both sessions. The transition between devices must occur within 60 minutes if the same adhesive is reused. Sleep, HRV, and AFIB analysis will not be performed.
Time frame: Through study completion - average of 18-months
The primary endpoint of this trial, for subjects participating in Subprotocols A through H, is to demonstrate screen-positive accuracy-sensitivity (True Positive Rate) exceeding 80%. This applies when a participant is indicated as having a cardiovascular condition based on COR ECG (COR 1.0 or COR 2.0) data analyzed using CardioMIND. Accuracy is assessed for substantial agreement on a per-indication basis, compared against results from an approved reference device or validated against electronic medical records (EMR) for previously diagnosed subjects.
Time frame: Through study completion - average of 18-months
The primary endpoint of this trial, for subjects participating in Subprotocols A through H, is to demonstrate screen-negative accuracy-specificity (True Negative Rate) exceeding 90%. This applies when a participant is indicated as negative or normal for a cardiovascular condition based on COR ECG (COR 1.0 or COR 2.0) data analyzed using CardioMIND. Screen-negative accuracy is assessed for substantial agreement on a per-indication basis, compared against results from an approved reference device or validated against electronic medical records (EMR) for subjects screened for the condition within 30 days of the study visit.
Time frame: Through study completion - average of 18-months
The primary endpoint of this trial, for subjects participating in Subprotocols G and H, is to demonstrate statistical agreement with bias (mean difference ) of less than +/- 10% and standard difference to be within +/- 15% between non-invasive hemodynamic metrics (CO, SV and RSA) assessed using CardioQSync and cleared non-invasive hemodynamic Reference System using only 5 minutes of CORMDx (or COR 2.0) ECG wearable data. Accuracy is assessed for substantial agreement on a per-indication basis, compared against results from an approved reference device.
Time frame: Through study completion - average of 18-months
The primary endpoint for Sleep and OSA metrics (for Subprotocol B, C and D) is to demonstrate
Time frame: Through study completion - average of 18-months
The secondary endpoint (for Subprotocols A thru H) for this trial are to demonstrate a Positive Predictive Value (PPV) > 50% where the participant has been indicated for a cardiovascular condition using COR ECG (COR 1.0 or COR 2.0) data with CardioMIND analysis, when validated using an approved Reference System for each indicated condition.
Time frame: Through study completion - average of 18-months
The secondary endpoint (for Subprotocols A thru H) for this trial are to demonstrate a Negative Predictive Value (PPV) > 85% where the participated has been indicated negative or normal for a cardiovascular condition using COR ECG with CardioMIND analysis, when validated using an approved Reference System for each indicated condition.
Time frame: Through study completion - average of 18-months
The secondary cardiopulmonary endpoints (for Subprotocols G and H) will be to assess for statistical agreement between the proportion of screen positive cases with clinically significant CO & SV changes that require interventions by analyzing 5-minutes of continuous COR 2.0 device data compared to those that are categorized by the Reference Standard. This will be tested with a one-sided single-sample z-test at a 97.5% confidence level to see if agreement exceeds 80%, thereby rejecting the null hypothesis of ≤80% agreement in favor of significant concordance.
Peerbridge Health, Inc
Industry
COR-INSIGHT: Optimizing Cardiovascular and Cardiopulmonary Outcomes with AI-Driven Multiplexed Indications from the COR ECG Wearable
Acronym: COR-INSIGHT
OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.
View the official ClinicalTrials.gov record (opens in a new tab)This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.
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