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增强现实建模在脊柱翻修手术中的实际应用:一例硬件故障和脊柱滑脱加重的病例报告。

Practical Use of Augmented Reality Modeling to Guide Revision Spine Surgery: An Illustrative Case of Hardware Failure and Overriding Spondyloptosis.

机构信息

Department of Neurological Surgery, The George Washington University Hospital, Washington, District of Columbia, USA.

出版信息

Oper Neurosurg (Hagerstown). 2022 Sep 1;23(3):212-216. doi: 10.1227/ons.0000000000000307. Epub 2022 Jul 18.

Abstract

BACKGROUND AND IMPORTANCE

Augmented reality (AR) is a novel technology with broadening applications to neurosurgery. In deformity spine surgery, it has been primarily directed to the more precise placement of pedicle screws. However, AR may also be used to generate high fidelity three-dimensional (3D) spine models for cases of advanced deformity with existing instrumentation. We present a case in which an AR-generated 3D model was used to facilitate and expedite the removal of embedded instrumentation and guide the reduction of an overriding spondyloptotic deformity.

CLINICAL PRESENTATION

A young adult with a remote history of a motor vehicle accident treated with long-segment posterior spinal stabilization presented with increasing back pain and difficulty sitting upright in a wheelchair. Imaging revealed pseudoarthrosis with multiple rod fractures resulting in an overriding spondyloptosis of T6 on T9. An AR-generated 3D model was useful in the intraoperative localization of rod breaks and other extensively embedded instrumentation. Real-time model thresholding expedited the safe explanation of the defunct system and correction of the spondyloptosis deformity.

CONCLUSION

An AR-generated 3D model proved instrumental in a revision case of hardware failure and high-grade spinal deformity.

摘要

背景与重要性

增强现实(AR)是一种具有广泛应用前景的新技术,尤其在神经外科领域。在脊柱畸形手术中,AR 技术主要用于更精确地放置椎弓根螺钉。然而,AR 也可用于为存在内固定装置的复杂脊柱畸形病例生成高保真度的三维(3D)脊柱模型。我们报告了一个病例,使用 AR 生成的 3D 模型来辅助和加速移除嵌入式内固定装置,并引导过伸性脊椎滑脱畸形的复位。

临床特征

一名年轻成人,因车祸导致长节段后路脊柱稳定术后出现腰痛加重,无法在轮椅上保持直立坐姿。影像学检查显示假关节形成,多根棒断裂,导致 T6 椎体在上位 T9 椎体上滑脱。AR 生成的 3D 模型有助于术中定位棒断裂和其他广泛嵌入的内固定装置。实时模型阈值处理加快了失效系统的安全解释和脊椎滑脱畸形的矫正。

结论

AR 生成的 3D 模型在硬件失败和高级别脊柱畸形的翻修病例中具有重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1a1/9718516/dd6ee6102149/ons-23-212-g001.jpg

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