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Imaging of Small Cell Lung Cancer: An Updated Overview of Current and Emerging Applications
Min Jae Cha1, Hyewon Choi2, Boda Nam2
1Department of Radiology, University of Washington, UW Medical Center-Montlake, Seattle, Wash.
Abstract:
Small cell lung cancer (SCLC) is an aggressive pulmonary neuroendocrine carcinoma characterized by rapid progression and early metastasis. Despite recent therapeutic advances, including immune checkpoint inhibitors and emerging targeted agents, survival outcomes remain poor. Recent molecular insights have identified four transcription factor-driven subtypes-SCLC-A, SCLC-N, SCLC-P, and the inflamed subtype SCLC-I-providing a framework for precision and immunotherapy-based strategies. This review summarizes the evolving scope of imaging in SCLC and highlights emerging approaches that support personalized medicine. Conventional imaging with CT, MRI, and fluorine 18 fluorodeoxyglucose PET/CT remains essential for diagnosis, staging, and treatment response assessment. Semiquantitative, volume-based PET/CT metrics, such as metabolic tumor volume and total lesion glycolysis, correlate with tumor proliferation and provide stronger prognostic value than maximum standardized uptake value. Emerging imaging approaches, including radiomics, radiogenomics, and machine learning, may further enable noninvasive tumor characterization and outcome prediction. Recent advances in molecular imaging, including delta-like ligand 3- and somatostatin receptor-targeted immune-PET, represent key steps toward biomarker-guided and personalized therapy. Together, integration of structural, functional, and molecular imaging with biologic insights is expected to shape the next phase of precision oncology in this highly aggressive malignancy. Keywords: Lung, Imaging Modality, PET, MRI, Molecular Imaging, Oncology, Neoplasms-Primary, CT, MR Imaging, Diagnosis, PET/CT, Small Cell Lung Cancer, Radiogenomics, Machine Learning, Radiolabeled Tracer, Personalized Medicine Supplemental material is available for this article. © RSNA, 2026.
Insights
Advanced imaging techniques offer new hope for small cell lung cancer (SCLC) patients. Integrating structural, functional, and molecular imaging with biologic insights will drive precision oncology for this aggressive lung cancer.
Area of Science:
- Oncology and Radiology
- Molecular Imaging and Diagnostics
Background:
- Small cell lung cancer (SCLC) is an aggressive neuroendocrine carcinoma with poor survival outcomes despite recent advances.
- Molecular subtyping (SCLC-A, -N, -P, -I) offers a framework for precision and immunotherapy strategies.
- Evolving imaging plays a crucial role in SCLC diagnosis, staging, and treatment assessment.
Purpose of the Study:
- To review the current and emerging role of imaging in small cell lung cancer (SCLC).
- To highlight how advanced imaging supports personalized medicine approaches in SCLC.
- To discuss the integration of imaging with molecular insights for precision oncology.
Main Methods:
- Review of conventional imaging modalities: CT, MRI, and 18F-FDG PET/CT.
- Analysis of semiquantitative PET/CT metrics (metabolic tumor volume, total lesion glycolysis) for prognostic value.
- Exploration of emerging techniques: radiomics, radiogenomics, machine learning, and targeted molecular imaging (e.g., delta-like ligand 3, somatostatin receptor imaging).
Main Results:
- Conventional imaging is essential for SCLC diagnosis, staging, and response assessment.
- Volume-based PET/CT metrics show stronger prognostic correlation than SUVmax.
- Emerging imaging approaches (radiomics, radiogenomics, ML) promise noninvasive characterization and outcome prediction.
- Molecular imaging with targeted tracers is advancing biomarker-guided therapy.
Conclusions:
- Integration of structural, functional, and molecular imaging is key to advancing precision oncology in SCLC.
- Advanced imaging techniques, including radiogenomics and targeted PET, are crucial for personalized medicine in SCLC.
- Future strategies will combine imaging insights with biologic understanding for improved SCLC management.
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