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Post-ROSC Electrocardiogram After Cardiac arrEst

Post-ROSC Electrocardiogram After Cardiac arrEst

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT04096079
Acronym
PEACE
Enrollment
1000
Registered
2019-09-19
Start date
2015-01-01
Completion date
2019-12-31
Last updated
2020-02-12

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Infarction, Myocardial, Out-Of-Hospital Cardiac Arrest

Keywords

Out-Of-Hospital Cardiac Arrest, STEMI, coronary angiography, post-ROSC ECG

Brief summary

PEACE study retrospectively evaluate patients who suffered an out-hospital cardiac arrest (OHCA) and who underwent a coronary angiography, enrolled in the registry of the Province of Pavia (Italy), Ticino Region (Switzerland), Wien region (Austria) and Nicosia area (Cyprus) to comprehend the best timing for post-ROSC ECG acquisition in order to reduce the number of false positive and to select the best candidates for emergency coronary angiography.

Detailed description

Twelve leads electrocardiogram (ECG) represents an essential step of the diagnostic workflow after ROSC as stated by both the European and the American guidelines. Actually about 80% of patients showing an ST segment elevation after return of spontaneous circulation (ROSC) have a coronary lesion documented by coronary angiography. In those patients, early coronary angiography has been shown to improve survival with good neurologic outcome. More controversial is the scene for patients without an ST segment elevation. Even in the absence of ST segment elevation an acute coronary syndrome can be at the basis of cardiac arrest. However, the prognostic role of early coronary angiography in such patients is still a matter of debate. In 2014 a consensus document by the European Association for Percutaneous Cardiovascular Interventions (EAPCI) recommended elevation to consider early coronary angiography only in the case of hemodynamic instability or of recurrent ventricular arrhythmias for patients without ST segment as in the case of NSTEMI patients without cardiac arrest. At the light of these considerations the correct diagnosis of ST segment elevation is of pivotal importance for the right treatment in the right time and in the right hospital for this type of patients. Moreover, during cardiac arrest and during resuscitation the heart is suffering of ischemia deriving both from a coronary occlusion if present and from low systemic perfusion. Post-ROSC ECG could reflect both these types of ischemia, so the ST elevation could be not specific for a coronary occlusion. However, some time after ROSC, in case of absence of a coronary occlusion, the heart perfusion should improve, the ischemia should decrease and the ST segment elevation should regress. Nevertheless, current guidelines do not provide any indication about the best timing for ECG acquisition after ROSC. We believe that address this issue could be important in order to correctly discriminate the appropriate candidate for emergency coronary angiography in the post-ROSC phase of a cardiac arrest. A preliminary analysis performed on a population of patients suffering an OHCA in the Province of Pavia supported this hypothesis. It was pointed out that early detection of ST segment elevation, within ten minutes from ROSC, was associated to a high number of false positives that is to say patients without an identifiable coronary culprit lesion. ST segment elevation was found to be an independent predictor of coronary angioplasty only if detected after ten minutes from ROSC. The PEACE study aimed to confirm our preliminary results on a larger and multicentric sample of post ROSC patients.

Interventions

None listed

Sponsors

Nicosia General Hospital
CollaboratorOTHER
Cardiocentro Ticino
CollaboratorOTHER
Medical University of Vienna
CollaboratorOTHER
Fondazione IRCCS Policlinico San Matteo di Pavia
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
RETROSPECTIVE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* All the patients older than 18 years old resuscitated from an out-of-hospital cardiac arrest with an available post-ROSC twelve leads ECG who underwent to a coronary angiography during hospital stay.

Exclusion criteria

* From the present study are excluded all the patients with a non-medical aetiology of the cardiac arrest (trauma, drowning, electrocution, drug or abuse substance overdose, asphyxia)

Design outcomes

Primary

MeasureTime frameDescription
Primary endpoint - PCIUp to 14 days after OHCA (hospital discharge)To assess the number of patients requiring a coronary angioplasty in the presence of ST segment elevation according to the ROSC-ECG time
Primary endpoint - TimeUp to 14 days after OHCA (hospital discharge)To identify the ROSC-ECG time associated to the lowest rate of false positive

Secondary

MeasureTime frameDescription
Secondary outcome - PCI in STEMI patientsUp to 14 days after OHCA (hospital discharge)to assess the number of patients requiring a coronary angioplasty in the absence of ST segment elevation
Secondary outcome - PCI in BBB patientsUp to 14 days after OHCA (hospital discharge)to assess the number of patients requiring a coronary angioplasty in the presence of left or right bundle branch block

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 17, 2026