Chai Guangrui, Zhang Deming, Hua Weijian, Yin Jun, Jin Yifei, Chen Ming
Department of Ophthalmology, Shengjing Hospital of China Medical University, Shenyang, Liaoning 110004, China.
Department of Mechanical and Aerospace Engineering, University of Florida, Gainesville, FL 32611, USA.
Bioact Mater. 2020 Sep 14;6(2):559-567. doi: 10.1016/j.bioactmat.2020.08.029. eCollection 2021 Feb.
Pediatric orbital trapdoor fractures are common in children and adolescents and usually require emergency surgical intervention. Herein, a personalized 3D printing-assisted approach to surgical treatment is proposed, serving to accurately and effectively repair pediatric orbital trapdoor fractures. We first investigated stress distribution in external force-induced orbital blowout fractures via numerical simulation, determining that maximum stresses on inferior and medial walls exceed those on superior and lateral walls and thus confer higher probability of fracture. We also examined 36 pediatric patients treated for orbital trapdoor fractures between 2014 and 2019 to verify our theoretical construct. Using 3D printing technique, we then created orbital models based on computed tomography (CT) studies of these patients. Absorbable implants were tailor-made, replicating those of 3D-printed models during surgical repairs of fractured orbital bones. As follow-up, we compared CT images and clinical parameters (extraocular movements, diplopia, enophthalmos) before and 12 months after operative procedures. There were only two patients with diplopia and six with enophthalmos >2 mm at 12 months, attesting to the efficacy of our novel 3D printing-assisted strategy.
小儿眶壁隐匿性骨折在儿童和青少年中很常见,通常需要紧急手术干预。在此,我们提出一种个性化的3D打印辅助手术治疗方法,以准确有效地修复小儿眶壁隐匿性骨折。我们首先通过数值模拟研究了外力致眼眶爆裂性骨折中的应力分布,确定下壁和内侧壁上的最大应力超过上壁和外侧壁,因此骨折概率更高。我们还检查了2014年至2019年间接受眶壁隐匿性骨折治疗的36例儿科患者,以验证我们的理论结构。然后,我们使用3D打印技术,根据这些患者的计算机断层扫描(CT)研究创建眼眶模型。在对骨折眼眶骨进行手术修复时,定制了可吸收植入物,使其与3D打印模型的植入物相同。作为随访,我们比较了手术前后的CT图像和临床参数(眼球运动、复视、眼球内陷)。术后12个月时,只有2例患者出现复视,6例患者眼球内陷>2 mm,证明了我们新颖的3D打印辅助策略的有效性。