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Novel 3D reconstruction and visualization contribute to clinical therapy for complex extremity fractures

机译:新颖的3D重建和可视化有助于复杂肢体骨折的临床治疗

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摘要

It is well known that medical imaging and visualization play important parts in traumatological orthopaedic surgery. Conventional radiological techniques including digital X-rays, computerized tomography (CT) and magnetic resonance imaging (MRI) have been widely used in clinic, but they have limitations. In order to achieve much deeper understandings and even better orthopaedic surgical interventions for complex fracture cases, eligible three-dimensional (3D) bone and joint simulations are desired. In this study, a CAD based 3D digital reconstruction system and a rapid prototyping (RP) technique were used to form 3D visualization and physical models of complex extremity fractures (CEF). Applications of the innovative biomedical simulation techniques and benefits of the 3D visualization and biomodeling in the highly difficult extremity fractures were elucidated.
机译:众所周知,医学成像和可视化在创伤骨科手术中起着重要的作用。常规的放射学技术包括数字X射线,计算机断层扫描(CT)和磁共振成像(MRI)已在临床中广泛使用,但它们有局限性。为了对复杂的骨折病例获得更深入的了解,甚至更好的骨科手术干预,需要进行合格的三维(3D)骨骼和关节模拟。在这项研究中,基于CAD的3D数字重建系统和快速原型制作(RP)技术用于形成复杂肢体骨折(CEF)的3D可视化和物理模型。阐明了创新的生物医学模拟技术的应用以及3D可视化和生物建模在高度困难的肢体骨折中的优势。

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