Percorrer por autor "Luz, L."
A mostrar 1 - 4 de 4
Resultados por página
Opções de ordenação
- 3D printing with silicone filling: Creation of an anatomical hand modelPublication . Pinheiro, João; Luz, L.; Seiça, E.; Silva, L.; Gonçalves, R.; Sousa, J. Paulo; Boeiro, H.To develop and evaluate a low-cost anatomical hand and wrist model produced by FDM 3D printing with silicone filling, calibrated using radiographic and CT data, and to assess its anatomical fidelity, imaging realism, mechanical durability, and suitability for training in musculoskeletal radiology, orthopedics, and anatomy education.
- 3D Printing: A new dimension for anatomy educationPublication . Pinheiro, João; Ribeiro, Luís Pedro; Magalhães Ribeiro, Anabela de; Gonçalves, R.; Luz, L.; Seiça, E.; Gonçalves, M.; Sousa, J. Paulo; Silva, L.The purpose of this pedagogical practice was to evaluate the feasibility, cost-effectiveness, and educational value of three-dimensional (3D) printed anatomical models in the teaching of human anatomy. Advances in medical imaging and 3D printing have enabled the conversion of CT and MRI data into physical models, offering new opportunities to enhance spatial understanding, tactile learning, and student engagement beyond traditional two-dimensional resources [1–4].
- Integrating three-dimensional printing into radiology practice: workflow, performance, and clinical impactPublication . Pinheiro, João; Ribeiro, Luís Pedro; Magalhães Ribeiro, Anabela de; Boeiro, H.; Seiça, E.; Gonçalves, M.; Gonçalves, R.; Luz, L.; Sousa, J. PauloTo evaluate the feasibility, performance, and workflow integration of three-dimensional printing within a radiology department, assessing imaging acquisition parameters, segmentation software, printing technologies, material selection, costs, and staff perception across multiple anatomical regions.
- Non-destructive x-ray ct characterization of the antikythera mechanism: advances in internal gear reconstructionPublication . Pinheiro, João; Anselmo, L.; Luz, L.; Seiça, E.; Silva, L.; Gonçalves, R.; Petrouleas, N.To demonstrate how high-resolution X-ray computed tomography enables the non-destructive internal characterization of Fragment A of the Antikythera Mechanism, allowing the identification, three-dimensional reconstruction, and functional interpretation of concealed gears, structural components, and inscriptions despite extensive corrosion.
