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Clinical Trials/NCT04886934
NCT04886934UnknownNot Applicable

Open Clinical Investigation to Assess Performance of a Temporary Epicardial Pace Wire With Integrated Sensor for Continuous Postoperative Monitoring of Myocardial Function After Heart Surgery Compared to Ultrasound

Cardiaccs AS1 site in 1 country38 target enrollmentStarted: October 25, 2021Last updated:
Conditions
Interventions

Trial Snapshot

Phase
Not Applicable
Enrollment
38
Locations
1
Primary Endpoint
Change from Baseline Peak Systolic Velocity (PSV) after increasing heart rate by 25 percent

Study Overview

Brief Summary

Transesophageal echocardiography is used to monitor cardiac wall motion at various time points during open-heart surgery. After surgery, the measurements are made at various time points by transthoracic echocardiography.

The CS1 system enables continuous, direct measurement of cardiac wall motion. This is achieved through use of temporary pacemaker wires incorporating a motion detector called an accelerometer. Use of TMEs during and after open-heart surgery is part of the normal clinical routine. Continuous monitoring of cardiac wall motion during and after surgery can quickly highlight the need for medical intervention with cardiac drugs and allow very early detection of potentially serious complications leading to abnormal cardiac wall motion.

Cardiac wall motion activity registered by the CS1 system and echocardiography at specific time points during and after surgery will be analyzed to see how well they compare.

Detailed Description

Echocardiography is currently the most important and most widely used tool in cardiology besides electrocardiography (ECG). It is reliable for assessing all stages of cardiovascular disease, and it is commonly used to detect heart (cardiac) wall motion dysfunction during and after open-heart surgery.

During open-heart surgery, transesophageal echocardiography (when the echocardiography sensor is introduced into the esophagus) is used to monitor cardiac wall motion at various time points during surgery. After surgery, the measurements are made at various time points by transthoracic echocardiography (when the echocardiography sensor is placed on the chest wall).

Use of the CS1 system enables continuous, direct measurements of cardiac wall motion. This is achieved through use of temporary pacemaker wires (also called temporary myocardial electrodes or TMEs) incorporating a motion detector called an accelerometer. Use of TMEs during and after open-heart surgery is part of the normal clinical routine. Continuous monitoring of cardiac wall motion during the surgery and the post-surgical recovery period can, for example, quickly highlight the need for medical intervention with cardiac drugs and allow very early detection of potentially serious complications such as ischemia (heart muscle is not receiving enough oxygen) and myocardial dysfunction (cardiac wall motion appears abnormal).

The key feature of the CS1 system is that the cardiac wall motion activity registered by the novel TMEs incorporating the accelerometer are displayed visually on a standard medical monitor and synchronized with the patient's ECG data. These data can easily be viewed by medical staff to check if the patient's condition is satisfactory or whether medical intervention is needed.

In the study, the CS1 system will be used in addition to the standard monitoring procedures that include ECG, blood pressures and intermittent echocardiography. Cardiac wall motion activity registered by the CS1 system and echocardiography at specific time points during and after surgery will be analyzed to see how well they compare.

Study Design

Study Type
Interventional
Allocation
Na
Intervention Model
Single Group
Primary Purpose
Diagnostic
Masking
None

Eligibility Criteria

Ages
19 Years to 99 Years (Adult, Older Adult)
Sex
All
Accepts Healthy Volunteers
No

Inclusion Criteria

  • •Patients with heart disease requiring surgery
  • •Above 18 years
  • •Patients suitable for study participation without safety concerns based on the Investigator's evaluation of medical history and physical examination.
  • •The patient must be able to understand the aims and objectives of the trial, willing and able to comply with all study related procedures
  • •The patient must be willing and able to provide written informed consent prior to participation in the clinical investigation
  • •The patient agrees to abstain from enrollment in any other clinical investigation for the duration of the study

Exclusion Criteria

  • •Esophageal disease
  • •Atrial fibrillation

Arms & Interventions

Safety and clinical performance of the CS1 system

Experimental

Placement of the CS1 device on the left ventricle and externalization of the associated leads through the chest wall during open-heart surgery.

Intervention: CS1 System (Device)

Outcomes

Primary Outcomes

Change from Baseline Peak Systolic Velocity (PSV) after increasing heart rate by 25 percent

Time Frame: After surgery: before extubation, while patient is in the intensive care unit (ICU)

Correlation between relative changes in PSVs measured by CS1 and echocardiography

Change from Baseline PSV after increasing heart rate by 25 percent

Time Frame: After surgery: after extubation and removal of drains, before patient is transferred from ICU to general ward

Correlation between relative changes in PSVs measured by CS1 and echocardiography

Secondary Outcomes

  • Adverse Events(Up to 30 days after surgery)
  • Adverse Device Effects(Up to removal of device at a maximum of 7 days after surgery)
  • Device Deficiencies(Up to removal of device at a maximum of 7 days after surgery)

Investigators

Sponsor Class
Industry
Responsible Party
Sponsor

Study Sites (1)

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