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年龄相关性楔形皮质性白内障的形态学:机械应力的作用

Morphology of age-related cuneiform cortical cataracts: the case for mechanical stress.

作者信息

Michael Ralph, Barraquer Rafael I, Willekens Ben, van Marle Jan, Vrensen Gijs F J M

机构信息

Institut Universitari Barraquer, Research Department, Laforja 88, E-08021 Barcelona, Spain.

出版信息

Vision Res. 2008 Feb;48(4):626-34. doi: 10.1016/j.visres.2007.12.005. Epub 2008 Jan 24.

Abstract

We evaluated the gross morphology, location, and fiber cell architecture of equatorial cortical opacities in the aging human lens. Using dark-field stereomicroscopy, we photographed donor lenses in toto and as thick slices. In addition, we investigated the details of the fiber cell architecture using fluorescent staining for membranes and by scanning electron microscopy. We then combined our data with data from recent studies on lens viscoelasticity. We found that small cortical and cuneiform opacities are accompanied by changes in fiber structure and architecture mainly in the equatorial border zone between the lens nucleus and cortex. Because the lens cortex and nucleus have different viscoelastic properties in young and old lenses, we hypothesize that external forces during accommodation cause shear stress predominantly in this border zone. The location of the described changes suggests that these mechanical forces may cause fiber disorganization, small cortical opacities, and ultimately, cuneiform cataracts.

摘要

我们评估了衰老人类晶状体赤道部皮质混浊的大体形态、位置及纤维细胞结构。使用暗场体视显微镜,我们对供体晶状体进行了整体及厚切片拍照。此外,我们通过膜荧光染色和扫描电子显微镜研究了纤维细胞结构的细节。然后,我们将我们的数据与近期关于晶状体粘弹性的研究数据相结合。我们发现,小的皮质混浊和楔形混浊主要伴有晶状体核与皮质之间赤道边界区纤维结构和构造的变化。由于年轻和老年晶状体的皮质和核具有不同的粘弹性特性,我们推测,调节过程中的外力主要在这个边界区引起剪切应力。所描述变化的位置表明,这些机械力可能导致纤维紊乱、小的皮质混浊,并最终导致楔形白内障。

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