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针对严重神经病理性脊柱关节病的三维打印患者特异性钛制骶骨植入物的快速实施及美国同情用药监管批准指南

Rapid Implementation of a 3-Dimensional-Printed Patient-Specific Titanium Sacrum Implant for Severe Neuropathic Spinal Arthropathy and Guide to Compassionate US Regulatory Approval.

作者信息

Ruiz-Cardozo Miguel A, Trevino Gabriel, Pando Alejandro, Brehm Samuel, Olufawo Michael, Barot Karma, Carey-Ewend Abigail, Yahanda Alexander T, Perdomo-Pantoja Alexander, Jauregui Julio J, Cadieux Magalie, Costa Megan, Coenen Julie, Dorward Ian, Anolik Rachel A, Sacks Justin M, Molina Camilo A

机构信息

Department of Neurological Surgery, Washington University School of Medicine, Saint Louis, Missouri, USA.

Department of Neurological Surgery, Rutgers New Jersey Medical School, New Jersey, New Jersey, USA.

出版信息

Oper Neurosurg (Hagerstown). 2023 Nov 1;25(5):469-477. doi: 10.1227/ons.0000000000000872. Epub 2023 Aug 16.

Abstract

BACKGROUND AND OBJECTIVE

Rapid design and production of patient-specific 3-dimensional-printed implants (3DPIs) present a novel opportunity to restore the biomechanically demanding integrity of the lumbopelvic junction. We present a unique case of a 61-year-old patient with severe neuropathic spinal arthropathy (Charcot spine) who initially underwent a T4-to-sacrum spinal fusion. Massive bone destruction led to dissociation of his upper body from his pelvis and legs. Reconstruction of the spinopelvic continuity was planned with the aid of a personalized lumbosacral 3DPI.

METHOD

Using high-resolution computed tomography scans, the custom 3DPI was made using additive titanium manufacturing. The unique 3DPI consisted of (1) a sacral platform with iliac screws, (2) modular corpectomy device with rigid connection to the sacral platform, and (3) anterior plate connection with screws for proximal fixation. The procedures to obtain compassionate use Food and Drug Administration approval were followed. The patient underwent debridement of a chronically open wound before undertaking the 3-stage reconstructive procedure. The custom 3DPI and additional instrumentation were inserted as part of a salvage rebuilding procedure.

RESULTS

The chronology of the rapid implementation of the personalized sacral 3DPI from decision, design, manufacturing, Food and Drug Administration approval, and surgical execution lasted 28 days. The prosthesis was positioned in the defect according to the expected anatomic planes and secured using a screw-rod system and a vascularized fibular bone strut graft. The prosthesis provided an ideal repair of the lumbosacral junction and pelvic ring by merging spinal pelvic fixation, posterior pelvic ring fixation, and anterior spinal column fixation.

CONCLUSION

To the best of our knowledge, this is the first case of a multilevel lumbar, sacral, and sacropelvic neuropathic (Charcot) spine reconstruction using a 3DPI sacral prosthesis. As the prevalence of severe spine deformities continues to increase, adoption of 3DPIs is becoming more relevant to offer personalized treatment for complex deformities.

摘要

背景与目的

快速设计和生产患者特异性三维打印植入物(3DPIs)为恢复腰骶部连接处对生物力学要求较高的完整性提供了新机会。我们报告了一例独特病例,一名61岁患有严重神经性脊柱关节病(夏科氏脊柱)的患者,最初接受了T4至骶骨的脊柱融合术。大量骨质破坏导致其上半身与骨盆和腿部分离。计划借助个性化腰骶部3DPI重建脊柱骨盆连续性。

方法

使用高分辨率计算机断层扫描,通过钛添加剂制造定制3DPI。独特的3DPI包括:(1)带有髂骨螺钉的骶骨平台;(2)与骶骨平台刚性连接的模块化椎体切除装置;(3)用于近端固定的带螺钉的前路钢板连接。遵循了获得美国食品药品监督管理局同情使用批准的程序。患者在进行三阶段重建手术前对慢性开放性伤口进行了清创。定制3DPI和额外器械作为挽救性重建手术的一部分进行植入。

结果

从决定、设计、制造、美国食品药品监督管理局批准到手术实施,个性化骶骨3DPI快速实施的时间为28天。假体根据预期解剖平面放置在缺损处,并使用螺杆系统和带血管蒂腓骨骨支撑移植进行固定。该假体通过融合脊柱骨盆固定、骨盆后环固定和脊柱前路固定,对腰骶关节和骨盆环进行了理想修复。

结论

据我们所知,这是首例使用3DPI骶骨假体进行多节段腰椎、骶骨和骶髂关节神经性(夏科氏)脊柱重建的病例。随着严重脊柱畸形的患病率持续上升,采用3DPIs对于为复杂畸形提供个性化治疗变得越来越重要。

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