首页> 外文期刊>Respiration: International Review of Thoracic Diseases >Application of 3D Printing for Patient-Specific Silicone Stents: 1-Year Follow-Up on 2 Patients
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Application of 3D Printing for Patient-Specific Silicone Stents: 1-Year Follow-Up on 2 Patients

机译:3D印刷对患者特异性硅胶支架的应用:2例患者的1年随访

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Managing complex benign airway disease is a major challenge in interventional pulmonology. Airway stent placement can result in complications due to a variety of factors, including poor fit of the stent in the airway. We report the 1-year outcome of 2 patients with airway disease caused by granulomatosis with polyangiitis (Wegener's) affecting the left main bronchus and secondary carina. These patients had not responded to systemic therapy or standard bronchoscopic techniques and had complications with commercially available airway stents. We describe a first-in-human, clinical experience to address these issues. Using computed tomography (CT) imaging and 3D printing technology, we generated and implanted patient-specific silicone airway stents to address airway disease. 3D patient-specific stent prescription was created using a CT scan of the patient's chest and a proprietary software package originally developed for orthopedic surgical planning. Silicone stents were manufactured and implanted. Observation for 1 year after implantation compared to the 6 months prior to patient-specific stent implant were compared for the number, clinically required stent changes, procedure time, and general clinical improvement per usual standard of care after airway stenting. Patients showed improved durability, a shorter procedure time, and improvement of patient-reported symptoms leading to a reduced need for stent changes and modifications. The use of 3D printing technology to make patient-specific silicone stents is feasible with early clinical proof of concept noting a durable improvement over 1 year of follow-up.
机译:管理复杂良性气道疾病是介入肺系统的主要挑战。由于各种因素,气道支架放置可能导致并发症,包括气道中支架的不良契约。我们报告了2例肉长疾病患者的1年患者,其肉芽肿病患者(Wegener)影响了左主支气管和继发性蠕动。这些患者没有反应全身治疗或标准支气管镜技术,并与市售的气道支架具有并发症。我们描述了一个致力于解决这些问题的临床经验。使用计算机断层扫描(CT)成像和3D打印技术,我们生成和植入了特定于患者的硅氧烷气道支架以解决气道疾病。 3D使用患者胸部的CT扫描和最初为整形外科计划开发的专有软件包创建了特定于患者的支架处方。制造和植入有机硅支架。 &gt观察;植入后1年与患者特异性支架植入前的6个月相比,对数量进行比较,临床所需的支架变化,程序时间和通气道支架后的每种常规护理标准的一般临床改进。患者表现出耐久性,较短的程序时间,以及改善患者报告的症状,导致支架改变和修改的需求降低。使用3D打印技术使患者特异性硅胶支架具有可行的概念早期临床证明,并不超过1年随访的持久改善。

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