Total-Body Perfusion Imaging with [<sup>11</sup>C]-Butanol.

Li, Elizabeth J; López, Javier E; Spencer, Benjamin A; Abdelhafez, Yasser; Badawi, Ramsey D; Wang, Guobao; Cherry, Simon R · J Nucl Med · 2023

Where this comes from

Abstract

Tissue perfusion can be affected by physiology or disease. With the advent of total-body PET, quantitative measurement of perfusion across the entire body is possible. [<sup>11</sup>C]-butanol is a perfusion tracer with a superior extraction fraction compared with [<sup>15</sup>O]-water and [<sup>13</sup>N]-ammonia. To develop the methodology for total-body perfusion imaging, a pilot study using [<sup>11</sup>C]-butanol on the uEXPLORER total-body PET/CT scanner was conducted. <b>Methods:</b> Eight participants (6 healthy volunteers and 2 patients with peripheral vascular disease [PVD]) were injected with a bolus of [<sup>11</sup>C]-butanol and underwent 30-min dynamic acquisitions. Three healthy volunteers underwent repeat studies at rest (baseline) to assess test-retest reproducibility; 1 volunteer underwent paired rest and cold pressor test (CPT) studies. Changes in perfusion were measured in the paired rest-CPT study. For PVD patients, local changes in perfusion were investigated and correlated with patient medical history. Regional and parametric kinetic analysis methods were developed using a 1-tissue compartment model and leading-edge delay correction. <b>Results:</b> Estimated baseline perfusion values ranged from 0.02 to 1.95 mL·min<sup>-1</sup>·cm<sup>-3</sup> across organs. Test-retest analysis showed that repeat baseline perfusion measurements were highly correlated (slope, 0.99; Pearson <i>r</i> = 0.96, <i>P</i> < 0.001). For the CPT subject, the largest regional increases were in skeletal muscle (psoas, 142%) and the myocardium (64%). One of the PVD patients showed increased collateral vessel growth in the calf because of a peripheral stenosis. Comorbidities including myocardial infarction, hypothyroidism, and renal failure were correlated with variations in organ-specific perfusion. <b>Conclusion:</b> This pilot study demonstrates the ability to obtain reproducible measurements of total-body perfusion using [<sup>11</sup>C]-butanol. The methods are sensitive to local perturbations in flow because of physiologic stressors and disease.

Medical subject headings