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Three-dimensional Technologies in Orthopedics.

Panayiotis J Papagelopoulos, Olga D Savvidou, Panagiotis Koutsouradis

    Orthopedics
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    New 3D digital technologies enhance orthopedic surgery, enabling complex structures to be made quickly. These advancements improve surgical precision, cost-effectiveness, and ease for complex orthopedic cases.

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    Area of Science:

    • Orthopedic Surgery
    • 3D Digital Technologies
    • Biomanufacturing

    Background:

    • Orthopedic clinical practice is being transformed by advanced 3D digital technologies.
    • These technologies allow for the rapid manufacturing of complex structures.
    • This innovation impacts various aspects of orthopedic care.

    Purpose of the Study:

    • To review the principles of 3D digital technologies in orthopedics.
    • To explore current applications of these technologies in clinical practice.
    • To highlight the benefits for complex orthopedic cases.

    Main Methods:

    • Review of fundamental principles: imaging, design, numerical simulation, and printing.
    • Analysis of current applications in orthopedic surgery.
    • Examination of patient-specific instrumentation and implants.

    Main Results:

    • 3D technologies enable the creation of complex orthopedic structures within hours.
    • Applications span pre-operative planning, surgical simulation, and custom implants.
    • These technologies contribute to more precise, cost-effective, and potentially simpler surgeries.

    Conclusions:

    • 3D digital technologies are revolutionizing orthopedic surgery.
    • They offer significant advantages for managing complex orthopedic conditions.
    • The integration of these technologies promises improved patient outcomes and procedural efficiency.