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3D Printer Application for Endoscope-Assisted Spine Surgery Instrument Development: From Prototype Instruments to Patient-Specific 3D Models

机译:用于内窥镜辅助脊柱外科手术器械开发的3D打印机应用程序:从原型器械到患者专用的3D模型

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摘要

Developing new surgical instruments is challenging. While making surgical instruments could be a good field of application for 3D printers, attempts to do so have proven limited. We designed a new endoscope-assisted spine surgery system, and using a 3D printer, attempted to create a complex surgical instrument and to evaluate the feasibility thereof. Developing the new surgical instruments using a 3D printer consisted of two parts: one part was the creation of a prototype instrument, and the other was the production of a patient model. We designed a new endoscope-assisted spine surgery system with a cannula for the endoscope and working instruments and extra cannula that could be easily added. Using custom-made patient-specific 3D models, we conducted discectomies for paramedian and foraminal discs with both the newly designed spine surgery system and conventional tubular surgery. The new spine surgery system had an extra portal that can be well bonded in by a magnetic connector and greatly expanded the range of access for instruments without unnecessary bone destruction. In foraminal discectomy, the newly designed spine surgery system showed less facet resection, compared to conventional surgery. We were able to develop and demonstrate the usefulness of a new endoscope-assisted spine surgery system relying on 3D printing technology. Using the extra portal, the usability of endoscope-assisted surgery could be greatly increased. We suggest that 3D printing technology can be very useful for the realization and evaluation of complex surgical instrument systems.
机译:开发新的手术器械具有挑战性。尽管制造外科手术器械可能是3D打印机的良好应用领域,但事实证明这样做的尝试有限。我们设计了一种新的内窥镜辅助脊柱手术系统,并使用3D打印机尝试创建复杂的手术器械并评估其可行性。使用3D打印机开发新的手术器械包括两个部分:一个部分是原型仪器的创建,另一部分是患者模型的制作。我们设计了一种新的内窥镜辅助脊柱外科手术系统,该系统带有用于内窥镜和工作器械的插管以及可以轻松添加的额外插管。使用定制的特定于患者的3D模型,我们通过新设计的脊柱外科手术系统和传统的管状外科手术对正中椎间孔和椎间孔椎间盘进行了解剖。新的脊柱外科手术系统具有一个额外的门,可以通过磁性连接器很好地粘合在一起,并大大扩展了器械的进入范围,而不会造成不必要的骨骼破坏。与常规手术相比,在有孔椎间盘切除术中,新设计的脊柱手术系统显示出较少的小面切除。我们能够开发并证明依赖于3D打印技术的新型内窥镜辅助脊柱外科手术系统的实用性。使用额外的门户,可以大大提高内窥镜辅助手术的可用性。我们建议3D打印技术对于复杂手术器械系统的实现和评估可能非常有用。

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