微创青光眼手术:对文献的批判性评价。

IF 5 2区 医学 Q1 NEUROSCIENCES
David J Mathew, Yvonne M Buys
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引用次数: 31

摘要

微型或微创青光眼手术(MIGS)已成为青光眼手术治疗范式的最新成员。这个术语不是指单一的手术,而是指旨在降低眼压的一组不同的手术和设备。从广义上讲,MIGS可分为增加小梁流出的手术[trabecome、iStent(第一代和第二代)、Hydrus微支架、Kahook Dual Blade和gonioscopy辅助下的腔内小梁切开术]、增加脉络膜上流出的手术(Cypass微支架和iStent Supra)和结膜泡形成手术(Xen凝胶支架和InnFocus微分流术)。与传统的青光眼手术,如小梁切除术和青光眼引流装置植入术(Ahmed、Baerveldt、Molteno瓣膜)相比,MIGS的并发症较轻,手术时间较短。MIGS是一个不断发展的领域,每个程序的疗效和并发症应独立考虑,更重视高质量和长期的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Minimally Invasive Glaucoma Surgery: A Critical Appraisal of the Literature.

Micro- or minimally invasive glaucoma surgeries (MIGS) have been the latest addition to the glaucoma surgical treatment paradigm. This term refers not to a single surgery, but rather to a group of distinct procedures and devices that aim to decrease intraocular pressure. Broadly, MIGS can be categorized into surgeries that increase the trabecular outflow [Trabectome, iStent (first and second generations), Hydrus microstent, Kahook Dual Blade and gonioscopy-assisted transluminal trabeculotomy], surgeries that increase suprachoroidal outflow (Cypass microstent and iStent Supra), and conjunctival bleb-forming procedures (Xen gel stent and InnFocus microshunt). Compared to traditional glaucoma surgeries, such as trabeculectomy and glaucoma drainage device implantation (Ahmed, Baerveldt, and Molteno valves), MIGS are touted to have less severe complications and shorter surgical time. MIGS represent an evolving field, and the efficacy and complications of each procedure should be considered independently, giving more importance to high-quality and longer-term studies.

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来源期刊
Annual Review of Vision Science
Annual Review of Vision Science Medicine-Ophthalmology
CiteScore
11.10
自引率
1.70%
发文量
19
期刊介绍: The Annual Review of Vision Science reviews progress in the visual sciences, a cross-cutting set of disciplines which intersect psychology, neuroscience, computer science, cell biology and genetics, and clinical medicine. The journal covers a broad range of topics and techniques, including optics, retina, central visual processing, visual perception, eye movements, visual development, vision models, computer vision, and the mechanisms of visual disease, dysfunction, and sight restoration. The study of vision is central to progress in many areas of science, and this new journal will explore and expose the connections that link it to biology, behavior, computation, engineering, and medicine.
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