Abstract 4367325: Correlation and Complementary Prognostic Value of 82Rb PET-Derived Myocardial Flow Reserve and Echocardiography-Assessed Diastolic Dysfunction

A Ahmad El Yaman (Houston Methodist DeBakey Heart&Vascular Center, Houston, Texas, United States) A Ahmed Sayed M Maria Alwan (Houston Methodist DeBakey Heart&Vascular Center, Houston, Texas, United States) A Asim Shaikh (Houston Methodist DeBakey Heart&Vascular Center, Houston, Texas, United States) M Mahmoud Al Rifai (Houston Methodist, Houston, Texas, United States) R RASHA BAZARI (Houston Methodist DeBakey Heart&Vascular Center, Houston, Texas, United States) H Hossam Lababidi W William Zoghbi (Houston Methodist DeBakey Heart&Vascular Center, Houston, Texas, United States) S Sherif Nagueh (Houston Methodist DeBakey Heart&Vascular Center, Houston, Texas, United States) M Mouaz Al-Mallah (Houston Methodist DeBakey Heart&Vascular Center, Houston, Texas, United States)

Abstract

Background: Coronary microvascular dysfunction (CMD) is increasingly recognized as a key contributor to diastolic dysfunction, the key pathology in heart failure with preserved ejection fraction (HFpEF). Objective: We studied the relationship between, and clinical implications of, CMD, assessed using myocardial flow reserve (MFR), and diastolic dysfunction. Methods: We included 861 symptomatic patients who underwent same-day transthoracic echocardiography and 82 Rubidium PET within 24 hours. Patients with LVEF <50% or perfusion defects were excluded. Diastolic dysfunction was assessed and graded according to the ASE guidelines, and MFR was calculated as the ratio of stress and rest myocardial blood flow. The primary outcome was a composite of all-cause death and heart failure (HF) hospitalizations. Results: Of the included 861 patients, the median age was 67 years, 54.9% were female, and 34.7% had diastolic dysfunction. MFR was inversely correlated with key echocardiographic markers of diastolic dysfunction, including E/e′ (r = –0.34), Estimated PASP (r = –0.35), and mitral A velocity (r = –0.31). Over a median follow-up of 1.34 years, 85 events occurred. The highest event rate was observed in patients with both impaired MFR (<2) and grade II/III diastolic dysfunction, with an adjusted hazard ratio (HR) of 6.21 (95% CI: 2.76–13.93) ( Figure 1 ). The simultaneous addition of MFR and diastolic dysfunction grade significantly improved predictive fit (P-value from likelihood ratio test: <0.001), with an increase in the C-index from 0.768 in the base model to 0.818 in the combined model. Combined assessment also improved risk-stratification over separate assessment of each variable (P-value of <0.001 vs MFR alone and 0.006 vs diastolic dysfunction grade alone)( Table 1 ). Conclusion: CMD demonstrated a significant correlation with diastolic dysfunction. Both were independently associated with adverse outcomes, and their combined assessment markedly enhanced risk stratification in patients without overt ischemia. These findings highlight the complementary roles of PET and echocardiography in evaluating HFpEF-related physiology and prognosis.

Article Details

Journal Circulation
Volume / Issue Vol. 152, Issue Suppl_3
Published November 04, 2025
ISSN 0009-7322
Publisher Lippincott Williams & Wilkins

Journal Info

Circulation

Lippincott Williams & Wilkins

ISSN: 0009-7322 Health Sciences

Authors (10)

A

Ahmad El Yaman

Houston Methodist DeBakey Heart&Vascular Center, Houston, Texas, United States

A

Ahmed Sayed

M

Maria Alwan

Houston Methodist DeBakey Heart&Vascular Center, Houston, Texas, United States

A

Asim Shaikh

Houston Methodist DeBakey Heart&Vascular Center, Houston, Texas, United States

M

Mahmoud Al Rifai

Houston Methodist, Houston, Texas, United States

R

RASHA BAZARI

Houston Methodist DeBakey Heart&Vascular Center, Houston, Texas, United States

H

Hossam Lababidi

W

William Zoghbi

Houston Methodist DeBakey Heart&Vascular Center, Houston, Texas, United States

S

Sherif Nagueh

Houston Methodist DeBakey Heart&Vascular Center, Houston, Texas, United States

M

Mouaz Al-Mallah

Houston Methodist DeBakey Heart&Vascular Center, Houston, Texas, United States