Medical School Orthopaedia and Traumatology Department, Faculty of Medicine, Kafkas University, Kars, Turkey.
Mechanical Engineering Department, Engineering Faculty, Kafkas University, Kars, Turkey.
Proc Inst Mech Eng H. 2021 Jul;235(7):780-791. doi: 10.1177/09544119211006528. Epub 2021 Apr 12.
The coexisting of three deformities as hallux valgus, flatfoot, and the calcaneal spur is an undefined medical condition, and it may be called triad of foot deformities (TFD) as a definition for a new disease entity. A customized 3D insole prototype was created by postprocessing of MRI data, and printed by 3D printer technology for the purpose of providing effective and innovative treatment for TFD. A 42 years-old female was clinically examined for TFD findings. All radiological measurements were made on the weightbearing anteroposterior and lateral X-rays. The patient underwent the pedogram (RSscan International, footscan©). MRI images were taken for the purpose of 3D scanning that was used for producing the 3D splint for TFD. AOFAS (American Orthopedic Foot and Ankle Society scores) and FHSQ (Foot Health Status Questionnaire) were used for clinical follow-up. MRI images of the patient were imported to Mimics software in order to create a 3D model using image processing. Thus, Patient-Specific 3D customized silicone orthotic insole that was based on 3D printing technology was produced. The one-simple test was used to compare the results of AOFAS and FHSQ scores. The measurements of radiological measurements were given. On the clinical follow-up, AOFAS was FHSQ scores were obtained. There was a significant difference in terms of AOFAS and FHSQ scores (≤ 0.05). As a result of our study; our 3D customized insole was produced at the price of approximately 1/3 of the total cost of three standard medical products. The coexisting of these three deformities may be called triad of foot deformities (TFD). The 3D printer technology enables us to access a customized, personalized conservative treatment option for TFD. The conservative treatment of TFD is possible by a single orthotic insole.
拇外翻、平足和跟骨骨刺同时存在是一种定义不明确的医学情况,它可能被称为三联足部畸形(TFD),作为一种新疾病实体的定义。通过对 MRI 数据进行后处理,创建了定制的 3D 鞋垫原型,并通过 3D 打印机技术进行打印,旨在为 TFD 提供有效和创新的治疗方法。对一名 42 岁女性进行了 TFD 发现的临床检查。所有影像学测量均在负重前后位和侧位 X 光片上进行。患者接受了足底压力测试(RSscan International,footscan©)。为了进行 3D 扫描,拍摄了 MRI 图像,用于制作 TFD 的 3D 夹板。使用 AOFAS(美国矫形足踝协会评分)和 FHSQ(足部健康状况问卷)进行临床随访。将患者的 MRI 图像导入 Mimics 软件,以便使用图像处理创建 3D 模型。因此,基于 3D 打印技术生产了患者特定的 3D 定制硅胶矫形鞋垫。使用单一测试比较了 AOFAS 和 FHSQ 评分的结果。给出了影像学测量的测量值。在临床随访中,获得了 AOFAS 和 FHSQ 评分。AOFAS 和 FHSQ 评分存在显著差异(≤0.05)。作为我们研究的结果;我们的 3D 定制鞋垫的生产成本约为三种标准医疗产品总成本的 1/3。这三种畸形的同时存在可能被称为三联足部畸形(TFD)。3D 打印机技术使我们能够获得 TFD 的定制、个性化保守治疗选择。通过单个矫形鞋垫可以对 TFD 进行保守治疗。