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Testing Acetylcholine Followed by Adenosine for Invasive Diagnosis of Coronary Vasomotor Disorders
Published on: February 3, 2021
Electrocardiographic profile of adenosine pharmacological stress testing
Hao Sun1, Yueqin Tian2, Lihui Zheng3
1Department of Cardiology, Beijing Chaoyang Hospital, Capital Medical University, Beijing 100020, P.R. China.
Insights
Adenosine stress testing is safe for detecting coronary artery disease, with most arrhythmias during the test being temporary and not affecting perfusion results. This study details electrocardiographic changes during adenosine stress tests.
Area of Science:
- Cardiology
- Diagnostic Imaging
- Electrophysiology
Background:
- Adenosine stress testing with radionuclide myocardial perfusion imaging is crucial for diagnosing coronary artery disease in patients unable to exercise.
- Electrocardiographic alterations during adenosine stress testing are not well-documented.
Purpose of the Study:
- To establish a detailed electrocardiographic profile of adenosine stress testing in a Chinese population.
- To assess the safety and diagnostic implications of adenosine-induced electrocardiographic changes.
Main Methods:
- Analysis of electrocardiographic data from 1,168 outpatients undergoing adenosine stress myocardial perfusion imaging.
- Correlation of electrocardiographic events with myocardial perfusion imaging results.
Main Results:
- A 9.42% incidence of arrhythmic events (transient and persistent) was observed during adenosine infusion.
- Atrioventricular block (AVB) and sinoatrial block occurred in 75 and 8 patients, respectively.
- ST depression was noted in 69 patients, with baseline AVB I° and ST depression predicting worsening during stress.
Conclusions:
- Adenosine stress testing is a safe method for myocardial perfusion imaging, with most arrhythmias being transient and reversible.
- Observed arrhythmias during adenosine infusion generally do not indicate abnormal perfusion results.
- Detailed electrocardiographic monitoring is valuable for understanding adenosine stress test responses.
Abstract:
Adenosine stress testing in conjunction with radionuclide myocardial perfusion imaging has become a common approach for the detection of coronary artery diseases in patients who are unable to perform adequate levels of exercise. However, specific electrocardiographic alterations during the test have been rarely described. Using a Chinese population, the aim of the present study was to provide a detailed electrocardiographic profile of adenosine stress testing. The study population included 1,168 consecutive outpatients who had undergone adenosine-induced stress myocardial perfusion imaging. Electrocardiographic data during and immediately following the adenosine infusion were collected, and the corresponding myocardial perfusion images were assessed. During adenosine infusion, 174 transient and 47 persistent arrhythmic events occurred in 110 patients (9.42%). Furthermore, frequent premature atrial contractions occurred in 65 individuals and frequent premature ventricular contractions were observed in 73 individuals. Atrioventricular block (AVB) occurred in 75 patients [first degree (I°) AVB, 16; second degree (II°) AVB, 58; third degree AVB, 1), while sinoatrial block occurred in eight patients. ST depression emerged in 69 patients. Patients with a baseline I° AVB had an increased risk of a II° AVB, and patients exhibiting baseline ST depression were more likely to have a further depressed ST segment during the stress test (odds ratio, 28.68 and 5.01, respectively; both P<0.001). Following adenosine infusion, 10 patients (0.86%) exhibited newly occurred arrhythmic events. However, no patient presented with acute myocardial infarction or sudden mortality. In conclusion, the results demonstrated that adenosine infusion was a safe method, despite the relatively high incidence of arrhythmic events. The majority of arrhythmias that occurred during infusion were transient, were reversible with the termination of infusion and did not indicate abnormal perfusion results.
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