ArticleEuropean radiology2023
Myeloma bone disease imaging on a 1st-generation clinical photon-counting detector CT vs. 2nd-generation dual-source dual-energy CT.
Article in European radiology, 2023. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 18 papers.
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Who cites it
18 citing papers in PubMed, 26 citations in OpenAlex.
- Photon-counting CT: image quality evaluation in patients with tibial plateau fracture treated with metallic osteosynthesis material.European radiology experimental · 2026Article
- Whole-body Dual-source Photon-counting CT in Multiple Myeloma-The Value of Virtual Monoenergetic Imaging for Lesion Vitality Assessment.Investigative radiology · 2026Article
- Detection of lumbar disc herniation and degeneration using photon-counting detector CT with virtual non-calcium imaging.European radiology · 2026Article
- Photon-Counting CT in Musculoskeletal Radiology: Technical Principles, Clinical Applications, and Future Directions.Journal of the Belgian Society of Radiology · 2026Review
- Applications of photon-counting CT in oncologic imaging: A systematic review.World journal of radiology · 2025Article
- Optimizing Imaging Parameters for Assessment of Hepatocellular Carcinoma Using Photon-Counting Detector Computed Tomography-Impact of Reconstruction Kernel and Slice Thickness.Tomography (Ann Arbor, Mich.) · 2025Article
- Diagnostic Innovations: Advances in imaging techniques for diagnosis and follow-up of multiple myeloma.Journal of bone oncology · 2025Review
- Role of Imaging in Multiple Myeloma: A Potential Opportunity for Quantitative Imaging and Radiomics?Cancers · 2024Review
- Detection of myeloma-associated osteolytic bone lesions with energy-integrating and photon-counting detector CT.Radiologie (Heidelberg, Germany) · 2024Article
- Diagnosis of newly developed multiple myeloma without bone disease detectable on conventional computed tomography (CT) scan by using dual-energy CT.Journal of bone oncology · 2024Article
- Chances and challenges of photon-counting CT in musculoskeletal imaging.Skeletal radiology · 2024Review
- Photon-Counting Computed Tomography for Microstructural Imaging of Bone and Joints.Current osteoporosis reports · 2024Review
- Calcium-Based Imaging of the Spine at Dual-Layer CT and Evaluation of Vertebral Fractures in Multiple Myeloma.Cancers · 2024Article
- Photon-Counting Computed Tomography: Experience in Musculoskeletal Imaging.Korean journal of radiology · 2024Review
- The Challenging Approach to Multiple Myeloma: From Disease Diagnosis and Monitoring to Complications Management.Cancers · 2024Review
- Imaging of Multiple Myeloma: Present and Future.Journal of clinical medicine · 2024Review
- Recent advances in imaging and artificial intelligence (AI) for quantitative assessment of multiple myeloma.American journal of nuclear medicine and molecular imaging · 2024Review
- [CT technology: photon-counting detector computed tomography].Radiologie (Heidelberg, Germany) · 2023Review
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Authors and funding
9 authors at 4 institutions in 1 country.
Funding
No grant is acknowledged in the PubMed record.
Abstract
objectiveSubjective and objective image quality comparison of bone microstructure and disease-related abnormalities in multiple myeloma patients using a 1st-generation dual-source photon-counting detector CT(DS-PCD-CT) and a 2nd-generation dual-source dual-energy (energy-integrating detector) CT (DS-EID-CT).
methodsFifty multiple myeloma patients (mean age 67.7 ± 10.9 years,16 females) were prospectively enrolled. Unenhanced whole-body CTs were clinically indicated and performed on DS-EID-CT and DS-PCD-CT (median time difference: 12 months). DS-PCD-CT was performed in Quantumplus UHR mode and DS-EID-CT was performed using dual-energy mode. DS-PCD-CT kernel was set at Br64 with Quantum iterative reconstruction strength Q1; for DS-EID-CT a comparable I70f kernel with SAFIRE iterative reconstruction strength 1 was used. Two independent radiologists assessed image quality subjectively using a 5-point Likert scale considering delineation and sharpness of trabecular bone and lytic bone lesions in the spine and pelvic bones. Additionally, ImageJ was used for quantification of bony septa inside the cancellous bone and through or the edges of osteolysis.
resultsOverall quality as well as detectability and sharpness in the delineation of lytic bone lesions were superior for DS-PCD-CT compared with DS-EID-CT (p < 0.0001). The inter-reader agreement for subjective image quality readings showed excellent consistency(α = 94.2-98.8). CTDI and DLP mean values for DS-PCD-CT and DS-EID-CT were 1107.4 ± 247.6 mGy*cm and 8.2 ± 1.8 mGy vs. 1344.3 ± 204.6 mGy*cm and 10.1 ± 1.9 mGy. The quantitative metric for bone microstructure in the femoral head showed significantly better visualization of trabeculae in DS-PCD-CT compared with DS-EID-CT (p < 0.0001). Quantitative analyses of edge sharpness of osteolysis showed significant steeper edges for DS-PCD-CT (p < 0.0001).
conclusionDS-PCD-CT significantly improves spatial resolution of bony microstructure and lytic bone lesions compared to DS-EID-CT. KEY POINTS: • Application of photon-counting detector CT is superior to dual-source dual-energy integrating detector in clinical workup of multiple myeloma patients. • Compared to energy integrating detectors, photon-counting detectors significantly increase the spatial resolution of bone microstructure including disease-related lytic bone lesions in patients with multiple myeloma.
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