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Updated: Jul 23, 2025

Intracoronary Acetylcholine Provocation Testing for Assessment of Coronary Vasomotor Disorders
Published on: August 18, 2016
J wave dynamicity during coronary angiography and intracoronary acetylcholine administration
Yoshiyasu Aizawa1, Narutaka Ohashi1, Akio Kawamura1
1Department of Cardiology, International University of Health and Welfare Narita Hospital, Narita, Chiba, Japan.
Insights
J-waves observed during coronary angiography and acetylcholine administration may indicate myocardial ischemia. These J-wave changes, potentially due to conduction delay, warrant further investigation in vasospastic angina.
Area of Science:
- Cardiology
- Electrophysiology
- Diagnostic Imaging
Background:
- J-waves are sometimes observed during coronary angiography (CAG) and intracoronary acetylcholine (ACh) administration.
- The clinical significance of these J-waves remains largely unknown.
Purpose of the Study:
- To investigate the significance and dynamic behavior of J-waves during CAG and ACh administration.
- To compare J-wave changes induced by CAG versus ACh in patients suspected of vasospastic angina.
Main Methods:
- Studied 49 patients (59.1 ± 11.5 years, 59% male) with suspected vasospastic angina.
- Compared J-wave dynamicity during CAG and intracoronary ACh administration.
- Analyzed J-wave amplitude changes and their correlation with coronary interventions and RR intervals.
Main Results:
- J-waves were augmented or newly observed in 11 patients during CAG and ACh administration.
- Similar increases in J-wave amplitude were noted during both procedures (p < .002 for CAG, p < .001 for ACh).
- J-wave changes were primarily in inferior leads, linked to right coronary interventions, and sometimes associated with shortened RR intervals.
Conclusions:
- Both CAG and intracoronary ACh administration similarly affect J-waves in individuals.
- Myocardial ischemia-induced conduction delay is a potential mechanism for J-wave alterations.
- Further research is necessary to fully elucidate the role of J-waves in cardiac conditions.
Background:
J-waves may be observed during coronary angiography (CAG) or intracoronary acetylcholine (ACh) administration, but their significance is unknown.
Methods:
Forty-nine patients, 59.1 ± 11.5 years old and 59% male, were studied on suspicion of vasospastic angina, and J wave dynamicity was compared between CAG and Ach administration.
Results:
Diagnostic (≥0.1 mV) or nondiagnostic (<0.1 mV) J waves in 9 and 3 patients, respectively, were augmented, and J waves were newly observed in 2 patients during CAG and Ach administration. Similar changes in the J-wave amplitude were observed: from 0.10 ± 0.09 mV to 0.20 ± 0.15 mV (p < .002) and from 0.10 ± 0.10 mV to 0.20 ± 0.16 mV (p < .001) during CAG and Ach administration, respectively. J waves were located in the inferior leads and changed only during the right coronary interventions. In the remaining 35 patients, J waves were absent before and during the coronary interventions. Augmentation of J waves was found when the RR interval was shortened in some patients. Injection of anoxic media into the coronary artery might induce a conduction delay from myocardial ischemia that manifests as augmentation or new occurrence of J waves.
Conclusions:
Both CAG and intracoronary Ach administration affected J waves similarly in the same individuals. A myocardial ischemia-induced conduction delay may be responsible for the changes in J waves, but further studies are needed.
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