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- 1From: Skeletal Radiology. (Vol. 51, Issue 2) Peer-ReviewedAbstract Only
- 2From: Skeletal Radiology. (Vol. 51, Issue 2) Peer-ReviewedAbstract Only
- 3From: Skeletal Radiology. (Vol. 51, Issue 3) Peer-ReviewedAbstract Only
- 4From: Skeletal Radiology. (Vol. 51, Issue 3) Peer-ReviewedAbstract Only
- 5From: Skeletal Radiology. (Vol. 51, Issue 2) Peer-ReviewedAbstract Only
- 6From: Skeletal Radiology. (Vol. 51, Issue 4) Peer-ReviewedAbstract Only
- 7From: Skeletal Radiology. (Vol. 51, Issue 5) Peer-ReviewedAbstract Only
- 8From: Skeletal Radiology. (Vol. 51, Issue 6) Peer-ReviewedAbstract Only
- 9From: Skeletal Radiology. (Vol. 51, Issue 6) Peer-ReviewedAbstract Only
- 10From: Skeletal Radiology. (Vol. 51, Issue 7) Peer-ReviewedAbstract Only
- 11From: Skeletal Radiology. (Vol. 51, Issue 7) Peer-ReviewedAbstract Only
- 12From: Skeletal Radiology. (Vol. 51, Issue 7) Peer-ReviewedObjective To determine whether size of the piriformis muscle, as characterized by either the coronal width or a segmented volume, correlates with outcomes after CT-guided injections. Materials and methods A...
- 13From: Skeletal Radiology. (Vol. 51, Issue 2) Peer-ReviewedTwo brothers, completely asymptomatic until their first year of life, started to complain from gingival hypertrophy, progressive development of painful soft tissue masses on the fingers and toes, on the face and on the...
- 14From: Skeletal Radiology. (Vol. 51, Issue 2) Peer-ReviewedThe advancements of artificial intelligence (AI) for osteoarthritis (OA) applications have been rapid in recent years, particularly innovations of deep learning for image classification, lesion detection, cartilage...
- 15From: Skeletal Radiology. (Vol. 51, Issue 3) Peer-ReviewedAuthor(s): Bharat Rekhi 1 2, Prachi Bapat 2, Nivedita Chakrabarty 3, Prakash Nayak 4 Author Affiliations: (1) grid.450257.1, 0000 0004 1775 9822, Department of Surgical Pathology, (Bone and Soft Tissues), Disease...
- 16From: Skeletal Radiology. (Vol. 51, Issue 6) Peer-ReviewedObjective To evaluate the utility of multidetector computed tomography MDCT quantitative measurements in identifying sarcopenia. Materials and methods The clinical data and MDCT images of 64 patients of sarcopenia...
- 17From: Skeletal Radiology. (Vol. 51, Issue 4) Peer-ReviewedThe estimation of growth rate of lytic bone tumors based on conventional radiography has been extensively studied. While benign tumors exhibit slow growth, malignant tumors are more likely to show fast growth. The most...
- 18From: Skeletal Radiology. (Vol. 51, Issue 3) Peer-ReviewedObjective Short tau or short TI inversion recovery (STIR) MRI sequences are considered a robust fat suppression technique. However, STIR also suppresses signals from other tissues with similar T1 relaxation times. This...
- 19From: Skeletal Radiology. (Vol. 51, Issue 6) Peer-ReviewedAuthor(s): Sherif Elsobky 1, Ramanan Rajakulasingam 2, Monika Madrova 3, Daniel Lindsay 3, Asif Saifuddin 2 Author Affiliations: (1) grid.451052.7, 0000 0004 0581 2008, Department of Radiology, Royal Free NHS...
- 20From: Skeletal Radiology. (Vol. 51, Issue 7) Peer-ReviewedObjective To determine the appropriate MRI criteria for the radiological diagnosis of significant quadriceps fat pad edema, to investigate the relationship between these criteria and anterior knee pain, and to evaluate...