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一种用于微创手术的全3D打印可转向器械。

A Fully 3D-Printed Steerable Instrument for Minimally Invasive Surgery.

作者信息

Culmone Costanza, Lussenburg Kirsten, Alkemade Joost, Smit Gerwin, Sakes Aimée, Breedveld Paul

机构信息

Bio-Inspired Technology Group (BITE), Department of BioMechanical Engineering, Faculty of Mechanical, Maritime, and Materials Engineering, Delft University of Technology, 2628 CD Delft, The Netherlands.

出版信息

Materials (Basel). 2021 Dec 20;14(24):7910. doi: 10.3390/ma14247910.

Abstract

In the field of medical instruments, additive manufacturing allows for a drastic reduction in the number of components while improving the functionalities of the final design. In addition, modifications for users' needs or specific procedures become possible by enabling the production of single customized items. In this work, we present the design of a new fully 3D-printed handheld steerable instrument for laparoscopic surgery, which was mechanically actuated using cables. The pistol-grip handle is based on ergonomic principles and allows for single-hand control of both grasping and omnidirectional steering, while compliant joints and snap-fit connectors enable fast assembly and minimal part count. Additive manufacturing allows for personalization of the handle to each surgeon's needs by adjusting specific dimensions in the CAD model, which increases the user's comfort during surgery. Testing showed that the forces on the instrument handle required for steering and grasping were below 15 N, while the grasping force efficiency was calculated to be 10-30%. The instrument combines the advantages of additive manufacturing with regard to personalization and simplified assembly, illustrating a new approach to the design of advanced surgical instruments where the customization for a single procedure or user's need is a central aspect.

摘要

在医疗器械领域,增材制造能够大幅减少部件数量,同时提升最终设计的功能。此外,通过实现单个定制产品的生产,针对用户需求或特定手术流程进行修改也成为可能。在这项工作中,我们展示了一种用于腹腔镜手术的全新全3D打印手持式可转向器械的设计,该器械通过线缆进行机械驱动。手枪式握把基于人体工程学原理,允许单手控制抓握和全方位转向,而柔性关节和卡扣式连接器实现了快速组装且零件数量最少。增材制造通过在CAD模型中调整特定尺寸,能够根据每位外科医生的需求对握把进行个性化定制,从而提高手术过程中用户的舒适度。测试表明,转向和抓握所需施加在器械握把上的力低于15牛,而抓握力效率经计算为10%至30%。该器械结合了增材制造在个性化定制和简化组装方面的优势,展示了一种先进手术器械设计的新方法,其中针对单个手术流程或用户需求进行定制是核心要点。

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