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Association between optical coherence tomography-defined culprit morphologies and changes in hyperemic coronary flow
Eisuke Usui1, Yoshihiro Hanyu1, Tatsuya Sakamoto1
1Cardiovascular Medicine, Tsuchiura Kyodo General Hospital, Tsuchiura, Ibaraki, Japan.
Insights
Layered plaques in coronary arteries may lead to decreased blood flow after percutaneous coronary intervention (PCI). Optical coherence tomography (OCT) identified these plaques, which were linked to reduced flow velocity measured by stress-transthoracic Doppler echocardiography (S-TDE).
Area of Science:
- Cardiology
- Medical Imaging
- Interventional Cardiology
Background:
- Stress-transthoracic Doppler echocardiography (S-TDE) noninvasively assesses coronary flow in the left anterior descending artery (LAD).
- The relationship between plaque morphology and coronary flow changes post-percutaneous coronary intervention (PCI) is not fully understood.
- This study investigates the link between optical coherence tomography (OCT)-derived plaque characteristics and S-TDE-measured flow changes after PCI in chronic coronary syndrome (CCS).
Purpose of the Study:
- To evaluate the association between periprocedural coronary flow changes measured by S-TDE and lesion-specific plaque characteristics determined by OCT.
- To identify predictors of coronary flow changes after elective PCI in patients with CCS.
Main Methods:
- Patients with CCS undergoing elective fractional flow reserve (FFR)-guided PCI for de novo LAD lesions were included.
- Pre- and post-PCI S-TDE measured hyperemic diastolic peak flow velocity (hDPV) as a surrogate for coronary flow.
- Lesions were categorized by %hDPV increase or decrease; OCT characterized plaque morphology.
Main Results:
- After PCI, hDPV increased significantly, but 19.4% of patients showed a %hDPV decrease.
- Layered plaques were more prevalent in lesions with %hDPV decrease compared to those with %hDPV increase (85.0% vs. 50.6%, P=0.01).
- Multivariable analysis identified layered plaques and high pre-PCI hDPV as independent predictors of %hDPV decrease.
Conclusions:
- In successful, uncomplicated elective PCI for de novo LAD lesions, layered plaques are independently associated with decreased hyperemic coronary flow.
- S-TDE can detect flow changes post-PCI, and OCT can identify morphological characteristics like layered plaques that predict these changes.
Background:
Stress-transthoracic Doppler echocardiography (S-TDE) provides a noninvasive assessment of coronary flow parameters in the left anterior descending artery (LAD). However, the association between morphological characteristics and coronary flow changes after elective percutaneous coronary intervention (PCI) remains unclear. We aimed to evaluate the relationships between periprocedural coronary flow changes observed on S-TDE and lesion-specific plaque characteristics obtained by optical coherence tomography (OCT) in the interrogated vessels in patients with chronic coronary syndrome (CCS).
Methods And Results:
Patients with CCS who underwent pre- and post-PCI S-TDE and elective fractional flow reserve (FFR)-guided PCI under OCT guidance for de novo single LAD lesions were included. S-TDE-derived hyperemic diastolic peak flow velocity (hDPV) was used as a surrogate for coronary flow. Lesions were categorized into two groups based on the %hDPV increase or decrease. The baseline clinical, physiological, and OCT findings were compared between the groups. In total, 103 LAD lesions were studied in 103 patients. After PCI, hDPV significantly increased from 55.6 cm/s to 69.5 cm/s (P<0.01), with a median %hDPV increase of 27.2 (6.32-59.1) %, while %hDPV decreased in 20 (19.4%) patients. The FFR improved in all patients. On OCT, layered plaques were more frequently present in the culprit vessels in the %hDPV-decrease group than in the %hDPV-increase group (85.0% vs. 50.6%, P = 0.01). Multivariable logistic regression analysis showed that the presence of layered plaques and high pre-PCI hDPV were independent predictors of %hDPV decrease.
Conclusions:
In patients who underwent successful uncomplicated elective PCI for de novo single LAD lesions, the presence of layered plaques was independently associated with hyperemic coronary flow decrease as assessed by S-TDE.
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