3D打印在全肩关节置换术中肩胛假体定位中的作用。实验研究

Netto Na, Belloti Jc, Faloppa F, Matsunaga Ft, Vásquez-Alvarez E, Tamaoki Mjs
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引用次数: 1

摘要

当非手术治疗失败时,采用全肩关节置换术。该手术的关键是正确植入关节盂假体以避免松动并促进假体的长期存活。尽管在术前计划中使用了医学图像资源,但由于在组件的正确空间定位方面存在困难,因此该程序仍然具有挑战性。3D打印带来了再现患者解剖结构的可能性,这有助于术前计划,因为它具有真正的三维特征。本研究的目的是评估肩关节置换术中肩关节关节部件的定位,比较TC扫描和肩关节骨性关节炎患者解剖3D打印模型在植入前计划中的使用。从连续9例接受全肩关节置换术的患者中生成54个3D打印肩胛骨模型,用于植入聚乙烯肩关节组件,隐藏真实手术中的解剖参数,由三名干预者以随机方式完成,在术前计划中使用相应的CT扫描或解剖3D打印肩胛骨。与肩胛骨体相关的前后位和腋窝位的角度定位用x线进行评估,并由三名独立评估者进行测量。在骨关节炎肩胛骨模型中肩胛骨组件植入角度的测量比较,在植入前计划中比较使用TC扫描或3D打印肩胛骨模型时,除了一名干预者,在正位视图中,支持3D打印模型,没有显著差异。在全肩关节置换术中,比较使用3D打印肩胛骨和TC扫描规划肩关节假体植入时,两种方法被证明是等效的。
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The Role of 3D Printing in the Positioning of the Glenoidal Component in Total Shoulder Arthroplasty. An Experimental Study
The total shoulder arthroplasty is the surgical treatment when the non-surgical treatment fails. The key point of this procedure is the correct implantation of the glenoidal component to avoid the loosening and to promote long term survival of the implant. Despite of the use of medical images resources in pre-operative planning, this procedure continues to be challenging due to difficulties in the correct spatial positioning of the components. The 3D print brought the possibility to reproduce the anatomy of the patient being helpful in the pre-operative planning, due to the real tridimensional characteristics. The objective of this study is to evaluate the positioning of the glenoidal component in total shoulder arthroplasty comparing the use of TC scans and anatomic 3D print models, from patients with shoulder osteoarthritis, in the pre-implantation planning. From nine consecutive patients submitted to a total shoulder arthroplasty were generated 54 3D print scapula models, used for implant polyethylene glenoid component, hiding the anatomic parameters like in a real surgery, done by three intervenors in a randomized way, using in the pre-operative planning the correspondent CT scans or the anatomic 3D printing scapula. The angular positioning in anteroposterior view and axillary view related to the scapula body, was evaluated with X-Ray, and measured by tree independent evaluators. It was no significant difference when comparing the measures of angulation of the implantation of glenoidal components in osteoarthritis scapula models, when comparing the use of the TC scans or the 3D print scapula models in pre-implantation planning, with exception founded in one intervenor, in anteroposterior view, in favor of 3D printing model. When comparing the use of 3D printed scapula and TC scans for planning the implantation of glenoidal component in total shoulder arthroplasty, both methods proved to be equivalent.
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