Finding studies
Finding studies
Take this into the appointment.
Saves the questions and what to expect into your notes, next to the visit they belong to.
Sarah McNeil, RN
CONTACT
Cesia Rodriguez Gongora, RN
CONTACT
Lead
University of Texas Southwestern Medical Center
With
schemic cardiomyopathy (ICM), characterized by compromised blood flow to the heart muscle, demands innovative solutions to accurately assess myocardial viability and metabolic function. While myocardial viability assessment is a widely practiced concept for selecting patients for revascularization, current imaging techniques often require separate sessions and lack holistic functional data. +2 This project introduces a novel hybrid multimodal imaging method designed to holistically understand the interplay between metabolism and perfusion in ischemic cardiomyopathy. To achieve this, the study deliberately partitions imaging objectives: +1 Myocardial Viability: SPECT MPI and 18F-FDG PET will be used together to assess myocardial viability. FDG-PET exploits the preferential uptake of glucose by metabolically active cells to identify viable myocardial tissue within ischemic regions. Myocardial Metabolism: HP-13C-MRI provides additional, distinct insights into myocardial metabolism. By tracking the conversion of hyperpolarized 13C-pyruvate into metabolic intermediates like bicarbonate and lactate, this technique allows for the real-time quantification of alterations in cardiac substrate utilization and oxidative metabolism. The study will enroll a total of 15 human subjects divided into two primary groups: Healthy Participants (n=6): Individuals with normal left ventricular ejection fraction (LVEF \> 0.50) to establish baseline imaging parameters. ICM Participants (n=9): Patients with advanced ischemic cardiomyopathy and low LVEF (≤ 40%) scheduled for standard-of-care CABG surgery. Due to current technical constraints regarding multi-nuclear support on hybrid PET-MRI scanners, the imaging modalities will be acquired on separate days within a 3-month period. The ICM cohort will be evaluated at two critical time points: preoperatively before CABG surgery, and longitudinally at one follow-up point 3-6 months post-surgery. Ultimately, this multimodal approach seeks to provide a non-invasive, highly accurate evaluation of disease severity, progression, and postoperative myocardial response to surgical revascularization. Study Objectives Primary Objective: To evaluate myocardial metabolism, viability, and mechanical function in preoperative ICM patients with low LVEF (≤ 40%) scheduled for Coronary Artery Bypass Graft (CABG) using a combined assessment of HP-13C-MRI, FDG-PET, and SPECT MPI. This aims to correlate metabolic and viability data with clinical indicators, providing insights into abnormal cardiac metabolism. Secondary Objectives: Secondary Objective 1: To establish baseline metabolic, viability, and mechanical function parameters in healthy subjects with normal LVEF (\> 0.50) using the combined HP-13C-MRI, FDG-PET, and SPECT MPI approach, serving as a comparative foundation. Secondary Objective 2: To longitudinally assess changes in myocardial metabolism, viability, and mechanical function in the ICM patient cohort at 3-6 months post-surgical revascularization (CABG). This aims to elucidate the impact of surgical revascularization on postoperative myocardial changes.
Age
20–80
Sex
ALL
Healthy volunteers
Accepted
