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眼眶植入物:潜在的新方向。

Orbital implants: potential new directions.

作者信息

Hicks Celia R, Morrison David, Lou Xia, Crawford Geoffrey J, Gadjatsy Adam, Constable Ian J

机构信息

Department Biomaterials and Polymer Research, Lions Eye Institute, and Research Ophthalmologist, Centre for Ophthalmology and Visual Science, University of Western Australia, Nedlands, Australia.

出版信息

Expert Rev Med Devices. 2006 Nov;3(6):805-15. doi: 10.1586/17434440.3.6.805.

Abstract

This article reviews orbital implants used to replace an eye after enucleation or evisceration. Advantages of implant placement are described, with discussion of implant and wrap material, and design features that affect clinical outcomes. Implants may be porous or nonporous, pegged for linkage with a cosmetic shell or unpegged, and may be wrapped with a covering material or tissue or unwrapped. Device shape, volume and material qualities affect tissue tolerance and the risk of exposure or extrusion. Limitations of currently available devices are discussed, with factors affecting surgeon and patient choice. Ideally, a device should be easy to insert, avoid the need for wrapping or adjunctive tissues, be light, biointegratable, comfortable after implantation and provide satisfactory orbital volume replacement, movement and cosmesis without requiring further surgery or pegging. This review briefly discusses developments in implant design and aspects of design that affect function, but is not a detailed clinical review; rather, it aims to stimulate thought on optimal design and discusses recent developments. Novel technology in the form of a prototype device with a soft, biointegratable anterior surface is described as an example of newer approaches.

摘要

本文综述了眼球摘除或眼内容剜出术后用于替代眼球的眼眶植入物。文中描述了植入物放置的优点,并讨论了植入物和包裹材料,以及影响临床结果的设计特点。植入物可以是多孔的或无孔的,有用于与美容义眼座连接的栓钉或无栓钉的,并且可以用覆盖材料或组织包裹或不包裹。装置的形状、体积和材料特性会影响组织耐受性以及暴露或挤出的风险。文中讨论了现有装置的局限性,以及影响外科医生和患者选择的因素。理想情况下,一种装置应该易于植入,无需包裹或辅助组织,重量轻,具有生物整合性,植入后舒适,并能提供令人满意的眼眶容积替代、活动度和美容效果,而无需进一步手术或栓钉固定。本文简要讨论了植入物设计的发展以及影响功能的设计方面,但不是详细的临床综述;相反,它旨在激发对最佳设计的思考并讨论最新进展。以具有柔软、可生物整合前表面的原型装置形式的新技术被作为新方法的一个例子进行了描述。

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