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Diagnostic and Prognostic Value of Angiography-derived IMR

Diagnostic Value of Angiography-derived Index of Microvascular Resistance in Coronary Artery Disease Patients and Its Prognostic Implication After Percutaneous Coronary Intervention

Status
UNKNOWN
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT04825028
Acronym
CHART-MiCro
Enrollment
271
Registered
2021-04-01
Start date
2021-04-01
Completion date
2021-10-01
Last updated
2021-04-01

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

Conditions

Coronary Microvascular Dysfunction, Myocardial Ischemia

Brief summary

The importance of the microvasculature in determining clinical outcomes has been highlighted in patients with coronary artery disease (CAD). For patients with stable CAD, despite the success of percutaneous coronary intervention (PCI) in relieving a stenosis in the epicardial coronary artery, microvascular dysfunction may preclude sufficient coronary flow and myocardial perfusion, possibly leading to worse clinical outcome. With the technical development of computational fluid dynamics, angiographic derivation of index of Index of Microcirculatory Resistance (IMR) without pressure wire, hyperemic agents, or theromdilution method is available as a potential alternative for pressure wire-derived IMR. In this regard, the current study will evaluate diagnostic implication of angiography-derived IMR and its prognostic implication after PCI in patients with stable CAD.

Detailed description

The importance of the microvasculature in determining clinical outcomes has been highlighted in patients with coronary artery disease (CAD). For patients with stable CAD, despite the success of percutaneous coronary intervention (PCI) in relieving a stenosis in the epicardial coronary artery, microvascular dysfunction may preclude sufficient coronary flow and myocardial perfusion, possibly leading to worse clinical outcome. With the technical development of computational fluid dynamics, angiographic derivation of IMR without pressure wire, hyperemic agents, or theromdilution method is available as a potential alternative for pressure wire-derived IMR. In this regard, the current study will evaluate diagnostic implication of angiography-derived IMR and its prognostic implication after PCI in patients with stable CAD. This study cohorts consist with 3 separate cohort: first, internal diagnostic accuracy cohort, which will evaluate correlation between angiography-derived IMR and hyperemic microvascular resistance calculated using Cadmium-Zinc-Telluride Single-Photon Emission Computed Tomography (CZT-SPECT)-derived myocardial blood flow and invasively measured pressure data. For this, 53 consecutive patients with available CZT-SPECT within 3 months of measuring FFR in the left anterior descending coronary artery will be evaluated. Second: external diagnostic cohort, in which diagnostic accuracy of angiography-derived IMR will be assessed in patients with ischemia and no obstructive coronary artery disease (INOCA) and normal controls, whose results were previously published (J Nucl Cardiol. 2020 Sep 30. doi: 10.1007/s12350-020-02252-8.) Among this cohort, 45 patients with no obstructive CAD and normal CZT-SPECT perfusion imaging will be regarded as normal controls, in 35 INOCA patients, vessels with normal corresponding perfusion territory will be regarded as internal control. Third, prognosis cohort, in which 138 consecutive CAD patients received PCI with available angiograms and who were suitable for angiographic fractional flow reserve and IMR measurement will be analyzed. Primary clinical outcome will be cardiac death or congestive heart failure at 2 years from index procedure. Secondary outcome will be any myocardial infarction, ischemia-driven revascularization, definite or probable stent thrombosis, congestive heart failure admission and angina pectoris admission at 2 years from index procedure.

Interventions

From coronary angiographic images, angiography-derived IMR will be calculated based on mathematical calculation. Angiography-derived IMR = (hyperemic Pa x angiography-derived FFR) x (vessel length / {K x V diastole}). Hyperemic Pa will be estimated from resting Pa according to prespecified equation.

Sponsors

Shanghai 10th People's Hospital
CollaboratorOTHER
Shanghai Zhongshan Hospital
Lead SponsorOTHER

Study design

Observational model
CASE_CONTROL
Time perspective
RETROSPECTIVE

Eligibility

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

Inclusion criteria

* CAD patients with available CZT-SPECT within 3 months of measuring FFR in the left anterior descending coronary artery (Cohort 1) * INOCA patients and normal controls confirmed by CZT-SPECT and angiography (Cohort 2) * Stable CAD patients received PCI (Cohort 3) * analyzable angiograms at the index procedure

Exclusion criteria

* Previous coronary artery bypass grafting * Chronic total occlusion patients * limited image quality of coronary angiography * Insufficient angiographic project for TIMI frame count * Severe tortuosity of target vessel * No optimal projection for reconstruction

Design outcomes

Primary

MeasureTime frameDescription
Diagnostic accuracyat the index procedureCorrelation between angiography-derived IMR and HMR
Major adverse cardiac eventsat 28 months from index procedureMajor adverse cardiac events (MACE), including cardiac death and readmission due to heart failure.

Secondary

MeasureTime frameDescription
Cardiac deathat 28 months from index procedureCardiac death
Readmission due to heart failureat 28 months from index procedureReadmission due to heart failure
A composite of cardiac death, readmission due to heart failure and anginaat 28 months from index procedureA composite of cardiac death, readmission due to heart failure and angina
Target vessel revascularizationat 28 months from index procedureTarget vessel revascularization
Readmission due to anginaat 28 months from index procedureReadmission due to angina
Spontaneous MIat 28 months from index procedureSpontaneous MI
A composite of cardiac death, readmission due to heart failure, spontaneous MI, target vessel revascularization and anginaat 28 months from index procedureA composite of cardiac death, readmission due to heart failure, spontaneous MI, target vessel revascularization and angina.

Countries

China

Contacts

Primary ContactNeng Dai, MD
niceday1987@hotmail.com+8613701997266

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 14, 2026