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Functional Micro/Macro Fabrication Combining Multiple Additive Fabrication Technologies: Design and Development of an Improved Micro-Vane Phacoemulsifier used in Cataract Surgery

机译:结合多种附加制造技术的功能性微/宏加工:用于白内障手术的改进型微叶片超声乳化剂的设计和开发

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摘要

Microstereolithography (uSL) technology can fabricate complex, three-dimensional (3D) microstructures, although μSL has difficulty producing macrostructures with micro-scale features. There are potentially many applications, where 3D micro-features can benefit the overall function of the macrostructure. One such application has been recently identified in cataract surgery where a medical device, called a coaxial phacoemulsifier, is inserted into the eye through a relatively small incision and used to break the lens apart while removing the lens pieces and associated fluid from the eye through a small tube. In order to maintain the eye at a constant pressure, the phacoemulsifier also includes an irrigation solution that is injected into the eye during the procedure. It has been reported, however, that the impinging flow from the irrigation solution on the corneal endothelial cells in the inner eye damages these cells during the procedure. As a result, we are exploring methods for reducing flow velocities during this procedure, and have designed a complex, 3D micro-vane within a sleeve that introduces swirl into the irrigation solution, and thus, produces a flow with rapidly dissipating flow velocities. However, the fabrication of the sleeve could not be accomplished using uSL alone, and thus, a two-part design was accomplished where a sleeve with the micro-vane was fabricated with μSL and a threaded fitting used to attach the sleeve to the phacoemulsifier was fabricated using an Objet Eden 333 rapid prototyping machine. The new combined device was tested in a water container using particle image velocimetry, and the results showed an ejection of the irrigation fluid through the micro-vane in three different radial direction. It is believed that this new device will reduce damage to endothelial cells during cataract surgery and significantly improve patient outcomes from this procedure. This unique application demonstrates the utility of combining uSL with a macro rapid prototyping technology for fabricating a real macro-scale device with functional, 3D micro-scale features that could not be fabricated using conventional methods.
机译:尽管μSL很难产生具有微尺度特征的宏观结构,但微立体光刻(uSL)技术可以制造复杂的三维(3D)微观结构。潜在的应用有很多,其中3D微观功能可以使宏观结构的整体功能受益。最近在白内障手术中发现了一种这样的应用,其中通过相对较小的切口将一种称为同轴超声乳化剂的医疗设备插入眼内,并用于将晶状体分开,同时通过鼻腔将晶状体和相关的液体从眼中取出。小管。为了使眼睛保持恒定压力,超声乳化剂还包括冲洗液,该冲洗液在手术过程中注入眼睛。然而,据报道,冲洗过程中冲洗液撞击内眼角膜内皮细胞的过程会损害这些细胞。结果,我们正在探索在此过程中降低流速的方法,并在套筒内设计了复杂的3D微型叶片,该叶片将旋流引入灌溉溶液中,从而产生了流速迅速消散的流动。但是,仅使用uSL不能完成套管的制造,因此完成了两部分设计,其中用μSL制成了带有微型叶片的套管,并且使用了将套管连接到超声乳化剂的螺纹接头。使用Objet Eden 333快速成型机制造。使用粒子图像测速仪在水容器中测试了新的组合设备,结果显示冲洗液通过微型叶片在三个不同的径向方向上喷出。相信这种新装置将减少白内障手术期间对内皮细胞的损害,并显着改善该手术的患者预后。这项独特的应用展示了将uSL与宏快速原型技术相结合的实用性,可用于制造具有功能性3D微米级特征的真正的大规模器件,而这些功能是使用传统方法无法制造的。

著录项

  • 来源
  • 会议地点 Austin TX(US);Austin TX(US)
  • 作者单位

    W.M.Keck Center for 3D Innovation, The University of Texas at El Paso, El Paso, TX 79968, USA Department of Mechanical Engineering, The University of Texas at El Paso, El Paso, TX 79968, USA;

    rnDepartment of Engineering Mechanics and Energy, University of Tsukuba, 309-8573 Tsukuba, Japan;

    Department of Engineering Mechanics and Energy, University of Tsukuba, 309-8573 Tsukuba, Japan;

    Department of Ophthalmology, Institute of Clinical Medicine, University of Tsukuba, 309-8573 Tsukuba, Japan;

    rnDepartment of Ophthalmology, Institute of Clinical Medicine, University of Tsukuba, 309-8573 Tsukuba, Japan;

    rnW.M.Keck Center for 3D Innovation, The University of Texas at El Paso, El Paso, TX 79968, USA Department of Mechanical Engineering, The University of Texas at El Paso, El Paso, TX 79968, USA;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 产品模型制作;
  • 关键词

    phacoemulsification; cataract surgery; irrigation; swirl; microstereolithography;

    机译:超声乳化白内障手术;灌溉;漩涡;微立体光刻;

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