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首页> 外文期刊>Journal of cataract and refractive surgery >Biomechanical properties of corneal tissue after ultraviolet-A-riboflavin crosslinking
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Biomechanical properties of corneal tissue after ultraviolet-A-riboflavin crosslinking

机译:紫外线-核黄素交联后角膜组织的生物力学特性

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摘要

Photodynamic collagen crosslinking (CXL) using ultraviolet-A (UVA) irradiation combined with the photosensitizer riboflavin has been introduced as a new treatment for progressive keratoconus. The results of clinical studies are promising, but the efficacy of the treatment in halting the progression depends on the stability of the induced biomechanical effects. The effects of corneal CXL on corneal rigidity; collagen fiber diameter; and resistance to heat degradation, enzymatic digestion, and swelling due to hydration are reviewed in this paper. The collective results indicate that CXL using UVA and riboflavin enhances the biomechanical properties of the corneal tissue, which remain stable over time. Therefore, this treatment could become the future standard therapy for keratoconus or used to halt the progression of keratoconus and postpone the need for corneal transplantation. The increase in availability and popularity of the CXL technique accentuates the requirement for reliable and accurate techniques for measuring corneal biomechanical properties before and after treatment. Financial Disclosure: No author has a financial or proprietary interest in any material or method mentioned. ? 2012 ASCRS and ESCRS Published by Elsevier Inc.
机译:已经引入了使用紫外线A(UVA)辐照结合光敏剂核黄素的光动力胶原交联(CXL)作为进行性圆锥角膜的新治疗方法。临床研究的结果是有希望的,但是在阻止进展中的治疗效果取决于诱导的生物力学作用的稳定性。角膜CXL对角膜硬度的影响;胶原纤维直径;并综述了其抗热降解,酶消化和水合溶胀的能力。总体结果表明,使用UVA和核黄素的CXL增强了角膜组织的生物力学特性,该特性随着时间的推移保持稳定。因此,该疗法可能成为圆锥角膜的未来标准疗法,或用于阻止圆锥角膜的进展并推迟角膜移植的需要。 CXL技术的可用性和普及性的增加,凸显了对在治疗前后测量角膜生物力学性能的可靠而准确的技术的需求。财务披露:没有任何作者对所提及的任何材料或方法有财务或专有利益。 ? 2012年ASCRS和ESCRS,由Elsevier Inc.发行。

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