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颅缝早闭手术中的计算机辅助设计与制造

Computer-aided design and manufacturing in craniosynostosis surgery.

作者信息

Seruya Mitchel, Borsuk Daniel E, Khalifian Saami, Carson Benjamin S, Dalesio Nicholas M, Dorafshar Amir H

机构信息

Department of Plastic and Maxillofacial Surgery, Royal Children's Hospital, Melbourne, Victoria, Australia.

出版信息

J Craniofac Surg. 2013 Jul;24(4):1100-5. doi: 10.1097/SCS.0b013e31828b7021.

Abstract

BACKGROUND

Considerable operative time is expended during the planning, shaping, and reconfiguring of the cranial vault in the pursuit of symmetry during open craniosynostosis surgery. Computer-aided design and manufacturing has recently been implemented in orthognathic surgery and complex craniomaxillofacial reconstruction as a means of optimizing operative accuracy and efficiency. In this report, we highlight our growing experience with this promising modality for the preoperative planning and intraoperative execution of cranial vault remodeling in patients with both simple and complex forms of craniosynostosis.

METHODS

Computer-assisted surgical planning begins with acquisition of high-resolution computed tomography scans of the craniofacial skeleton. An Internet-based teleconference is then held between the craniofacial and biomedical engineering teams and provides a forum for virtual manipulation of the patient's preoperative three-dimensional computed tomography with real-time changes and feedback. Through virtual surgical planning, osteotomies are designed and calvarial bones reconfigured to achieve the desired cranial vault appearance. Cutting and positioning guides are manufactured to transform the virtual plan into a reality.

RESULTS

From February to March 2012, 4 children (aged 9 months to 6 years) with craniosynostosis underwent computer-assisted simulation and surgery. Diagnoses included metopic, unicoronal (n = 2), and multisutural synostoses (sagittal and left unicoronal). Open craniofacial repairs were performed as virtually planned, including front o-orbital remodeling, fronto-orbital advancement, and anterior two-thirds calvarial remodeling, respectively. Cutting and final positioning guides demonstrated excellent fidelity and ease of use.

CONCLUSIONS

Computer-aided design and manufacturing may offer a platform for optimizing operative efficiency, precision, and accuracy in craniosynostosis surgery, while accelerating the learning curve for future trainees.

摘要

背景

在开放性颅骨缝早闭手术中,为了追求对称性,在颅骨穹窿的规划、塑形和重新配置过程中会花费大量的手术时间。计算机辅助设计与制造最近已应用于正颌外科手术和复杂的颅颌面重建,作为优化手术准确性和效率的一种手段。在本报告中,我们重点介绍了我们在使用这种有前景的方式对简单和复杂形式颅骨缝早闭患者进行颅骨穹窿重塑的术前规划和术中实施方面不断积累的经验。

方法

计算机辅助手术规划始于获取颅面骨骼的高分辨率计算机断层扫描。然后颅面和生物医学工程团队之间举行基于互联网的电话会议,为虚拟操作患者术前三维计算机断层扫描提供一个论坛,可进行实时更改和反馈。通过虚拟手术规划,设计截骨术并重新配置颅骨,以实现所需的颅骨穹窿外观。制造切割和定位导向器,将虚拟计划变为现实。

结果

2012年2月至3月,4例(年龄9个月至6岁)颅骨缝早闭患儿接受了计算机辅助模拟和手术。诊断包括额缝、单冠缝(n = 2)和多缝早闭(矢状缝和左单冠缝)。按照虚拟计划进行开放性颅面修复,分别包括额眶重塑、额眶前移和颅骨前三分之二重塑。切割和最终定位导向器显示出极好的逼真度和易用性。

结论

计算机辅助设计与制造可为优化颅骨缝早闭手术的手术效率、精度和准确性提供一个平台,同时加快未来受训人员的学习曲线。

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