Punyaratabandhu Thipachart, Liacouras Peter C, Pairojboriboon Sutipat
Department of Orthopaedics, Phramongkutklao Hospital and College of Medicine, Bangkok, Thailand.
3D Medical Application Center, Department of Radiology, Walter Reed National Military Medical Center, Bethesda, USA.
3D Print Med. 2018 Nov 26;4(1):12. doi: 10.1186/s41205-018-0035-6.
Three Dimensional (3D) printed models can aid in effective pre-operative planning by defining the geometry of tumor mass, bone loss, and nearby vessels to help determine the most accurate osteotomy site and the most appropriate prosthesis, especially in the case of complex acetabular deficiency, resulting in decreased operative time and decreased blood loss.
Four complicated cases were selected, reconstructed and printed. These 4 cases were divided in 3 groups of 3D printed models. Group 1 consisted of anatomical models with major vascular considerations during surgery. Group 2 consisted of an anatomical model showing a bone defect, which was intended to be used for substantial instrumentation, pre-operatively. Group 3 consisted of an extra-compartmental bone tumor which displayed a deteriorated cortical outline; thus, using CT and MRI fused images to reconstruct the model accurately. An orthopedic surgeon created the 3D models of groups 1 and 2 using standard segmentation techniques. Because group 3 required complex techniques, an engineer assisted during digital model construction.
These models helped to guide the orthopedic surgeon in creating a personalized pre-operative plan and a physical simulation. The models proved to be beneficial and assisted with all 4 cases, by decreasing blood loss, operative time and surgical incision length, and helped to select the appropriate acetabular supporting ring in complex acetabular deficiency, pre-operatively.
Qualitatively, using 3D printing in tumor cases, provides personalized advantages regarding the various characteristics of each skeletal tumor.
三维(3D)打印模型可以通过确定肿瘤块的几何形状、骨质流失情况和附近血管,来辅助进行有效的术前规划,有助于确定最准确的截骨部位和最合适的假体,特别是在复杂髋臼缺损的情况下,从而减少手术时间和失血量。
选择4例复杂病例,进行重建和打印。这4例病例被分为3组3D打印模型。第1组由手术过程中需主要考虑血管情况的解剖模型组成。第2组由一个显示骨缺损的解剖模型组成,该模型术前用于大量器械操作。第3组由一个骨皮质轮廓受损的关节外骨肿瘤组成;因此,使用CT和MRI融合图像准确重建模型。一名骨科医生使用标准分割技术创建了第1组和第2组的3D模型。由于第3组需要复杂技术,一名工程师在数字模型构建过程中提供协助。
这些模型有助于指导骨科医生制定个性化的术前计划和进行物理模拟。这些模型在所有4例病例中都被证明是有益的,通过减少失血量、手术时间和手术切口长度,并有助于在术前为复杂髋臼缺损选择合适的髋臼支撑环。
定性地说,在肿瘤病例中使用3D打印,针对每个骨骼肿瘤的各种特征提供了个性化优势。