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三维打印的枕颈融合导板在儿童颅颈交界区不稳患者中的应用。

Three-Dimensional-Printed Drill Guides for Occipitothoracic Fusion in a Pediatric Patient With Occipitocervical Instability.

机构信息

3D lab, University of Groningen, University Medical Center Groningen, Groningen, the Netherlands.

Department of Neurosurgery, University of Groningen, University Medical Center Groningen, Groningen, the Netherlands.

出版信息

Oper Neurosurg (Hagerstown). 2021 Jun 15;21(1):27-33. doi: 10.1093/ons/opab060.

Abstract

BACKGROUND

Pediatric occipitothoracic fusion can be challenging because of small size pedicles and thin occipital bone. Three-dimensional (3D) printing technology can help with accurate screw insertion but has not been described for occipital keel plate positioning so far.

OBJECTIVE

To describe the novel use of 3D technology to position occipital keel plates during pediatric occipitothoracic fixation.

METHODS

A young boy with segmental spinal dysgenesis presented with asymmetrical pyramidal paresis in all limbs. Developmental abnormities of the cervical spine caused a thinned spinal cord, and because of progressive spinal cord compression, surgical intervention by means of occipitothoracic fixation was indicated at the age of 3 yr.Because of the small-size pedicles and thin occipital bone, the pedicle screws and occipital plates were planned meticulously using 3D virtual surgical planning technology. The rods were virtually bent in order to properly align with the planned screws. By means of 3D-printed guides, the surgical plan was transferred to the operating theater. For the occipital bone, a novel guide concept was developed, aiming for screw positions at maximal bone thickness.

RESULTS

The postoperative course was uneventful, and radiographs showed good cervical alignment. After superimposing the virtual plan with the intraoperative acquired computed tomography, it was confirmed that the occipital plate positions matched the virtual plan and that pedicle screws were accurately inserted without signs of breach.

CONCLUSION

The use of 3D technology has greatly facilitated the performance of the occipitothoracic fixation and could, in the future, contribute to safer pediatric spinal fixation procedures.

摘要

背景

由于儿童的椎弓根较小且枕骨较薄,因此枕颈融合术具有挑战性。三维(3D)打印技术有助于准确插入螺钉,但迄今为止尚未用于枕骨龙骨板定位。

目的

描述在儿童枕颈固定中使用 3D 技术定位枕骨龙骨板的新方法。

方法

一名患有节段性脊柱发育不良的小男孩出现四肢对称的锥体束麻痹。颈椎发育异常导致脊髓变薄,由于脊髓逐渐受压,在 3 岁时需要进行枕颈固定手术干预。由于椎弓根较小且枕骨较薄,使用 3D 虚拟手术计划技术精心规划了椎弓根螺钉和枕骨板。为了与计划的螺钉正确对齐,对杆进行了虚拟弯曲。通过 3D 打印的导板,将手术计划转移到手术室。对于枕骨,开发了一种新的导板概念,旨在将螺钉放置在最大骨厚度处。

结果

术后过程顺利,影像学检查显示颈椎对线良好。将虚拟计划与术中获得的 CT 进行叠加后,确认了枕骨板位置与虚拟计划匹配,并且椎弓根螺钉准确插入,没有突破迹象。

结论

3D 技术的使用极大地促进了枕颈融合术的实施,并且将来可能有助于更安全的儿童脊柱固定手术。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/945b/8203425/c700fb2b95dd/opab060fig1.jpg

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