paper

Maximum Likelihood Estimation Yields Accurate Line-of-Response Assignment for Positron + Prompt Gamma Ray Events in Multiplexed PET (mPET)

arXiv:2604.06500 · doi:10.1088/2057-1976/ae6e44

Abstract

For accurate disease characterization using positron emission tomography (PET), it is desirable to image multiple radiotracers in a single scan. Conventional PET methods cannot do this due to the indistinguishable annihilation photons produced by different radiotracers. One approach is to label one radiotracer with a positron+prompt-gamma ($β^+\!\!-\!\!γ$) isotope producing triple coincidences, and another with a pure positron-emitting ($β^+$) isotope producing double coincidences. However, $β^+\!\!-\!\!γ$ emitters present challenges in correctly identifying the two annihilation photons, or equivalently, assigning the correct line-of-response (LOR) to triple-photon coincidence events. Here, we propose a maximum likelihood estimation (MLE) framework leveraging spatial, timing, and energy information to determine the most probable LOR. Simulation studies validated the method: simulations showed over 96\% and 94\% accuracy for LOR assignment of $β^+\!\!-\!\!γ$ emitters Na and I point sources, respectively. Furthermore, simulated phantom imaging of Na or I distributions alongside a $β^+$ emitter demonstrated that MLE LOR assignment achieved comparable image quality -- measured by contrast recovery coefficient (CRC) and cross-talk ratio (XR) -- to benchmark methods, where the prompt gamma was identified using an energy threshold ( keV) for Na and as the highest-energy photon for I.

12 pages, 7 figures, submitted to Biomedical Physics & Engineering Express

Maximum Likelihood Estimation Yields Accurate Line-of-Response Assignment for Positron + Prompt Gamma Ray Events in Multiplexed PET (mPET) · wovepaper