arXiv · 2511.18547
Towards Integrated Clinical-Computational Nuclear Medicine
Abstract
The field of Clinical-Computational Nuclear Medicine is rapidly advancing, fueled by AI, tracer kinetic modeling, radiomics, and integrated informatics. These technologies improve imaging quality, automate lesion detection, and enable personalized radiopharmaceutical therapy through physiologically based pharmacokinetic (PBPK) modeling and voxel-level dosimetry. Workflow automation and Natural Language Processing (NLP) further enhance operational efficiency. However, successful implementation and adoption of these tools require clinical oversight to ensure accuracy, interpretability, and patient safety. This paper highlights key computational innovations and emphasizes the critical role of clinician-guided evaluation in shaping the future of precision imaging and therapy.
Explore related subjects
Keep this discovery
Faraz Farhadi, Shadi A. Esfahani, Fereshteh Yousefirizi, Monica Luo, Pedro Esquinas Fernandez, Arkadiusz Sitek, Hamid Sabet, Babak Saboury, Arman Rahmim, Pedram Heidari. 2025-11-23. Towards Integrated Clinical-Computational Nuclear Medicine. https://arxiv.org/abs/2511.18547
Cite the original work for its findings. Save a collection to share your selection of sources.