3D-printed spine surgery implants: a systematic review of the efficacy and clinical safety profile of patient-specific and off-the-shelf devices

JL Burnard, WCH Parr, WJ Choy, WR Walsh… - European Spine …, 2020 - Springer
Purpose Three-dimensional printing (3DP), or additive manufacturing, is an emergent
fabrication technology for surgical devices. As a production method, 3DP enables physical …

Three-dimensional printing in spine surgery: a review of current applications

Y Tong, DJ Kaplan, JM Spivak, JA Bendo - The Spine Journal, 2020 - Elsevier
In recent years, the use of three-dimensional printing (3DP) technology has gained traction
in orthopedic spine surgery. Although research on this topic is still primarily limited to case …

Challenges in the design and regulatory approval of 3D-printed surgical implants: a two-case series

K Willemsen, R Nizak, HJ Noordmans… - The Lancet Digital …, 2019 - thelancet.com
Background Additive manufacturing or three-dimensional (3D) printing of metal implants can
provide novel solutions for difficult-to-treat conditions, yet legislation concerning patient …

[HTML][HTML] 3D printed anatomical (bio) models in spine surgery: clinical benefits and value to health care providers

WCH Parr, JL Burnard, PJ Wilson… - Journal of Spine …, 2019 - ncbi.nlm.nih.gov
The applications of three-dimensional printing (3DP) for clinical purposes have grown
rapidly over the past decade. Recent advances include the fabrication of patient specific …

Does implantation site influence bone ingrowth into 3D-printed porous implants?

WR Walsh, MH Pelletier, T Wang, V Lovric, P Morberg… - The Spine Journal, 2019 - Elsevier
BACKGROUND CONTEXT The potential for osseointegration to provide biological fixation
for implants may be related to anatomical site and loading conditions. PURPOSE To …

3D-printed titanium cages without bone graft outperform PEEK cages with autograft in an animal model

JL Laratta, BJ Vivace, M López-Peña, FM Guzón… - The Spine Journal, 2022 - Elsevier
Abstract BACKGROUND CONTEXT Modernization of 3D printing has allowed for the
production of porous titanium interbody cages (3D-pTi) which purportedly optimize implant …

[HTML][HTML] Additive manufacturing for metallic spinal implants: A systematic review

VK Meena, P Kumar, P Kalra, RK Sinha - Annals of 3D Printed Medicine, 2021 - Elsevier
Additive Manufacturing (AM) is rapidly finding application in the manufacturing of spinal
implants. The flexibility of manufacturing complex freeform structures combined with lattice …

Three-dimensional printed anatomic modeling for surgical planning and real-time operative guidance in complex primary spinal column tumors: single-center …

OP Leary, J Crozier, DD Liu, T Niu, NJ Pertsch… - World neurosurgery, 2021 - Elsevier
Objective Three-dimensional (3D) printing has emerged as a visualization tool for clinicians
and patients. We sought to use patient-specific 3D-printed anatomic modeling for …

[HTML][HTML] Advancements in Custom 3D-Printed Titanium Interbody Spinal Fusion Cages and Their Relevance in Personalized Spine Care

KU Lewandrowski, S Vira, JC Elfar… - Journal of Personalized …, 2024 - mdpi.com
3D-printing technology has revolutionized spinal implant manufacturing, particularly in
developing personalized and custom-fit titanium interbody fusion cages. These cages are …

[HTML][HTML] 3D 打印人工椎体及椎间融合器在颈椎前路手术中应用的临床效果

志强王, 皓宇冯, 迅马, 晨陈, 晨邓… - Chinese Journal of …, 2021 - ncbi.nlm.nih.gov
3D 打印人工椎体及椎间融合器在颈椎前路手术中应用的临床效果- PMC Back to Top Skip to
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