Chen Yi-Wen, Shih Cheng-Ting, Cheng Chen-Yang, Lin Yu-Cheng
3D Printing Medical Research Center, China Medical University Hospital, China Medical University, Taichung, Taiwan, Republic of China.
Institute of Clinical Medical Science, China Medical University, Taichung, Taiwan, Republic of China.
J Med Syst. 2017 Sep 9;41(10):164. doi: 10.1007/s10916-017-0808-2.
Skull defects result in brain infection and inadequate brain protection and pose a general danger to patient health. To avoid these situations and prevent re-injury, a prosthesis must be constructed and grafted onto the deficient region. With the development of rapid customization through additive manufacturing and 3D printing technology, skull prostheses can be fabricated accurately and efficiently prior to cranioplasty. However, an unfitted skull prosthesis made with a metal implant can cause repeated infection, potentially necessitating secondary surgery. This paper presents a method of creating suitably geometric graphics of skull defects to be applied in skull repair through active contour models. These models can be adjusted in each computed tomography slice according to the graphic features, and the curves representing the skull defect can be modeled. The generated graphics can adequately mimic the natural curvature of the complete skull. This method will enable clinical surgeons to rapidly implant customized prostheses, which is of particular importance in emergency surgery. The findings of this research can help surgeons provide patients with skull defects with treatment of the highest quality.
颅骨缺损会导致脑部感染和脑部保护不足,对患者健康构成普遍威胁。为避免这些情况并防止再次受伤,必须构建一个假体并移植到缺损区域。随着通过增材制造和3D打印技术实现快速定制的发展,颅骨假体可以在颅骨成形术前精确而高效地制造出来。然而,用金属植入物制成的不合适的颅骨假体可能会导致反复感染,可能需要进行二次手术。本文提出了一种通过主动轮廓模型创建适用于颅骨修复的颅骨缺损几何图形的方法。这些模型可以根据图形特征在每个计算机断层扫描切片中进行调整,并可以对代表颅骨缺损的曲线进行建模。生成的图形可以充分模拟完整颅骨的自然曲率。这种方法将使临床外科医生能够快速植入定制的假体,这在急诊手术中尤为重要。本研究结果有助于外科医生为颅骨缺损患者提供最高质量的治疗。