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◆ IEEE journal of biomedical and health informatics2026-08-24

MVKDM: A Multi-View Ki Diffusion Model for Ultra-Short Total-Body Parametric PET Imaging Using Relative Patlak Ki' Inputs.

Hao Sun, Wenxiang Yi, Xiaotong Hong, Yanchao Huang, Xiaolong Niu, Zanting Ye, Xuanbin Wu, Hubing Wu, Lijun Lu

原始摘要(英文原文)· Original abstract
Standard Patlak imaging requires prolonged dynamic PET acquisition ($\geq$60 min), hindering its clinical adoption. Although the relative Patlak (RP) plot shortens scan times, it entails a trade-off between acquisition duration and image fidelity, and lacks absolute quantitative validation. To address these limitations, we developed the Multi-View $K_{i}$ Diffusion Model (MVKDM), which integrates the average standardized uptake value PET (PETavg) and $K_{i}^{\prime }$ images as conditional priors to synthesize high-quality $K_{i}$ images. MVKDM employs a multi-view strategy to ensure 3D structural consistency and mitigate artifacts. The model was validated across four shortened scanning protocols (pro.1-pro.4, with durations ranging from 30 to 4 min). Assessment included visual inspection, quantitative metrics, and voxel-wise correlation/consistency analysis against reference $K_{i}$ images. MVKDM outperformed other $K_{i}$ synthesis frameworks, yielding $K_{i}$ images with clear anatomical structures and minimal noise. Across pro.1 to pro.4, MVKDM maintained high fidelity, with peak signal-to-noise ratio (PSNR) / structural similarity index (SSIM) values as follows: 45.34 $\pm$ 1.84 / 0.993 $\pm$ 0.003, 43.72 $\pm$ 2.28 / 0.990 $\pm$ 0.004, 42.78 $\pm$ 2.39 / 0.984 $\pm$ 0.006, and 42.03 $\pm$ 2.33 / 0.984 $\pm$ 0.009, respectively. Even with only 4 minutes of late-phase data, the synthetic images maintained favorable overall similarity with the reference $K_{i}$ images and preserved lesion-related uptake patterns. MVKDM enables the synthesis of high-quality and quantitatively accurate $K_{i}$ images from ultra-short dynamic scans. This framework provides a practical and robust solution for rapid total-body parametric imaging in routine clinical workflows.
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MVKDM: A Multi-View Ki Diffusion Model for Ultra-Short Total-Body Parametric PET Imaging Using Relative Patlak Ki' Inputs. — 科研速览 Science Skim