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3D Planning and Printing of Patient Specific Implants for Reconstruction of Bony Defects
Published on: August 4, 2020
3D-printed patient-specific surgical instruments and implants: a technological leap in precision medicine
Muhammad Khizar1, Muhammad Zaib1, Sharjeel Haider2
1Faculty of Medicine, Georgian American University, Manifest Medical Research Co, Tbilisi, Georgia.
None:
Three-dimensional (3D) printing has revolutionized modern surgery by enabling the creation of patient-specific implants and instruments tailored to individual anatomy. Through advanced imaging and computer aided design, 3D-printed devices enhance surgical precision, reduce operative time, and improve functional and aesthetic outcomes across multiple specialties. Clinical evidence from leading countries, including Australia, China, and the United Kingdom, demonstrates successful use of custom titanium spinal and craniofacial implants, restoring complex anatomical structures that standard devices cannot replicate. Technological advances in biocompatible materials such as titanium alloys, PEEK polymers, and bioresorbable composites have expanded the scope of applications, while emerging point-of-care printing facilities allow hospitals to produce customized implants on-site. Despite challenges involving cost, regulatory oversight, and long-term validation, the integration of 3D printing into surgical workflows marks a major step toward personalized medicine. Continued interdisciplinary collaboration and robust clinical trials are essential to establish safety, cost-effectiveness, and broader accessibility of these transformative technologies.

