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Published on: August 25, 2023
Change in angiogram-derived management strategy of patients with chest pain when some FFR data are available: How
Vinayak Nagaraja1, Mamas Mamas2, Michael Mahmoudi3
1Department of Cardiology, Prince of Wales Hospital, Sydney, NSW, Australia.
Insights
Fractional flow reserve (FFR) significantly changes patient management during coronary angiography, with 22%-48% of cases seeing altered treatment plans. Routine FFR use can improve patient care by providing more accurate lesion assessment.
Area of Science:
- Cardiology
- Interventional Cardiology
- Medical Imaging
Background:
- Invasive angiography alone has limitations in assessing angina.
- Fractional flow reserve (FFR) assesses lesion-specific ischemia and predicts clinical outcomes.
- FFR availability during angiography impacts patient management.
Purpose of the Study:
- To assess the consistency of management changes from FFR-directed versus angiogram-directed strategies.
- To evaluate observational and randomized trials comparing these strategies.
Main Methods:
- Systematic literature search across multiple databases (MEDLINE, EMBASE, PubMed, etc.).
- Inclusion of observational and randomized trials meeting eligibility criteria.
Main Results:
- Eight studies involving 2468 patients showed FFR changed management from OMT to revascularization in 29%.
- FFR changed management for 38.61% of patients initially slated for PCI to OMT or CABG.
- Angiogram-derived management was altered by FFR in 22%-48% of patients across studies.
Conclusions:
- FFR use during coronary angiography consistently alters angiogram-directed management.
- Routine FFR at diagnostic angiography is suggested to improve patient care.
Background:
The assessment of patients presenting with angina using invasive angiography alone is imperfect. By contrast, fractional flow reserve (FFR) allows for assessment of lesion-specific ischemia, which is predictive of clinical outcome. A series of studies has demonstrated that the availability of FFR data at the time of diagnostic angiography leads to significant differences in the management of those patients.
Hypothesis:
The objective of this paper is to assess the consistency in the difference in management resulting from an FFR-directed versus and angiogram-directed strategy in appropriate observational and randomized trials.
Methods:
A methodical search was made using MEDLINE, Current Contents Connect, Google Scholar, EMBASE, Cochrane library, PubMed, Science Direct, and Web of Science.
Results:
Eight studies were identified using the eligibility criteria. A total of 2468 patients were recommended to have optimal medical therapy (OMT) alone after initial angiographic assessment but, after FFR results were available, a total of 716 (29.0%) were referred for revascularization (PCI 626 patients [25.36%]; CABG 90 patients [3.64%]). Similarly, 3766 patients were originally committed to PCI after initial angiography: of these 1454 patients (38.61%) were reconsidered to be suitable for OMT alone and 71 individuals (1.8%) were deemed suitable for CABG after FFR data were available. Further, of 366 patients referred for CABG based on angiographic data, the availability of FFR data changed the final decision to OMT alone in 65 patients (17.76%) and PCI in 51 patients (13.9%). Overall, the angiogram-derived management was changed in 22%-48% of these study populations when FFR data were available.
Conclusions:
Some use of FFR during coronary angiography alters the angiogram-directed management in a remarkably consistent manner. These data suggest that routine use of FFR at the diagnostic angiogram would improve patient care.
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