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基于增材制造的复杂颅面缺损的单次手术治疗方法。

Surgery of complex craniofacial defects: A single-step AM-based methodology.

机构信息

Department of Industrial Engineering of Florence, University of Florence (Italy), via di Santa Marta 3, 50139 Firenze, Italy.

Department of Industrial Engineering of Florence, University of Florence (Italy), via di Santa Marta 3, 50139 Firenze, Italy.

出版信息

Comput Methods Programs Biomed. 2018 Oct;165:225-233. doi: 10.1016/j.cmpb.2018.09.002. Epub 2018 Sep 5.

Abstract

BACKGROUND AND OBJECTIVE

The purpose of the present paper is to pave the road to the systematic optimization of complex craniofacial surgical intervention and to validate a design methodology for the virtual surgery and the fabrication of cranium vault custom plates. Recent advances in the field of medical imaging, image processing and additive manufacturing (AM) have led to new insights in several medical applications. The engineered combination of medical actions and 3D processing steps, foster the optimization of the intervention in terms of operative time and number of sessions needed. Complex craniofacial surgical intervention, such as for instance severe hypertelorism accompanied by skull holes, traditionally requires a first surgery to correctly "resize" the patient cranium and a second surgical session to implant a customized 3D printed prosthesis. Between the two surgical interventions, medical imaging needs to be carried out to aid the design the skull plate. Instead, this paper proposes a CAD/AM-based one-in-all design methodology allowing the surgeons to perform, in a single surgical intervention, both skull correction and implantation.

METHODS

A strategy envisaging a virtual/mock surgery on a CAD/AM model of the patient cranium so as to plan the surgery and to design the final shape of the cranium plaque is proposed. The procedure relies on patient imaging, 3D geometry reconstruction of the defective skull, virtual planning and mock surgery to determine the hypothetical anatomic 3D model and, finally, to skull plate design and 3D printing.

RESULTS

The methodology has been tested on a complex case study. Results demonstrate the feasibility of the proposed approach and a consistent reduction of time and overall cost of the surgery, not to mention the huge benefits on the patient that is subjected to a single surgical operation.

CONCLUSIONS

Despite a number of AM-based methodologies have been proposed for designing cranial implants or to correct orbital hypertelorism, to the best of the authors' knowledge, the present work is the first to simultaneously treat osteotomy and titanium cranium plaque.

摘要

背景与目的

本文旨在为复杂颅面外科干预的系统优化铺平道路,并验证一种用于虚拟手术和颅骨定制板制造的设计方法。医学成像、图像处理和增材制造(AM)领域的最新进展为许多医学应用带来了新的见解。医学行动和 3D 处理步骤的工程组合,促进了干预措施在手术时间和所需手术次数方面的优化。复杂的颅面外科干预,例如严重的眶距过宽伴颅骨孔,传统上需要第一次手术来正确“调整”患者的颅骨,然后进行第二次手术植入定制的 3D 打印假体。在这两次手术之间,需要进行医学成像以辅助颅骨板的设计。然而,本文提出了一种基于 CAD/AM 的一揽子设计方法,允许外科医生在一次手术干预中同时进行颅骨矫正和植入。

方法

提出了一种基于 CAD/AM 患者颅骨模型的虚拟/模拟手术策略,以规划手术并设计最终颅骨斑块的形状。该过程依赖于患者成像、缺陷颅骨的 3D 几何重建、虚拟规划和模拟手术,以确定假设的解剖 3D 模型,最终进行颅骨板设计和 3D 打印。

结果

该方法已在复杂病例研究中进行了测试。结果证明了所提出方法的可行性,手术时间和总费用显著减少,更不用说患者单次手术带来的巨大益处。

结论

尽管已经提出了许多基于 AM 的方法来设计颅骨植入物或矫正眼眶距过宽,但据作者所知,目前的工作是首次同时治疗截骨术和钛颅骨板。

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