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对活体人类角膜进行紫外线摄影可揭示哈德逊-施塔利线和生理涡状纹。

Ultraviolet photography of the in vivo human cornea unmasks the Hudson-Stähli line and physiologic vortex patterns.

作者信息

Every Sean G, Leader John P, Molteno Anthony C B, Bevin Tui H, Sanderson Gordon

机构信息

Ophthalmology Section, Department of Medical and Surgical Sciences, Dunedin School of Medicine, New Zealand.

出版信息

Invest Ophthalmol Vis Sci. 2005 Oct;46(10):3616-22. doi: 10.1167/iovs.04-1455.

DOI:10.1167/iovs.04-1455
PMID:16186341
Abstract

PURPOSE

To perform ultraviolet (UV) macrophotography of the normal in vivo human cornea, establishing biometric data of the major component of UV absorption for comparison with the Hudson-Stähli (HS) line, the distribution of iron demonstrated by Perl stain, and cases of typical amiodarone keratopathy.

METHODS

Nonrandomized comparative case series of UV photographs of 76 normal corneas (group 1) and 16 corneas with typical amiodarone keratopathy (group 2). Image-analysis software was used to grade the major component of UV absorption for slope and the coordinates of its points of intersection with the vertical corneal meridian and inflection.

RESULTS

In group 1 the major component had a mean slope of 5.8 degrees, sloping down from nasal to temporal cornea. The mean coordinates of points of intersection with the vertical corneal meridian and inflection were (0, 0.30) and (0.02, 0.31), respectively. No significant differences between groups 1 and 2 were found for slope (P = 0.155), intersection with the vertical corneal meridian (P = 0.517), and point of inflection (P = 0.344). The major component of UV absorption was consistent with published characteristics of the HS line, and coincidence of UV absorption and Perl-stained iron was demonstrated in one corneal button. A vortex pattern of UV absorption was observed in all corneas.

CONCLUSIONS

UV photography demonstrates subclinical corneal iron, confirming its deposition in an integrated HS line/vortex pattern. Coincident iron and amiodarone deposition occurs in amiodarone keratopathy.

摘要

目的

对正常活体人角膜进行紫外线(UV)宏观摄影,建立紫外线吸收主要成分的生物特征数据,以便与哈德逊 - 施塔利(HS)线、Perl染色显示的铁分布以及典型胺碘酮角膜病变病例进行比较。

方法

对76只正常角膜(第1组)和16只典型胺碘酮角膜病变角膜(第2组)进行UV摄影的非随机对照病例系列研究。使用图像分析软件对紫外线吸收的主要成分进行斜率分级,并确定其与角膜垂直子午线和拐点交点的坐标。

结果

在第1组中,主要成分的平均斜率为5.8度,从角膜鼻侧到颞侧向下倾斜。与角膜垂直子午线和拐点交点的平均坐标分别为(0, 0.30)和(0.02, 0.31)。第1组和第2组在斜率(P = 0.155)、与角膜垂直子午线的交点(P = 0.517)和拐点(P = 0.344)方面未发现显著差异。紫外线吸收的主要成分与已发表的HS线特征一致,并且在一个角膜切片中证实了紫外线吸收与Perl染色铁的重合。在所有角膜中均观察到紫外线吸收的涡状模式。

结论

UV摄影显示亚临床角膜铁沉着,证实其以整合的HS线/涡状模式沉积。在胺碘酮角膜病变中存在铁和胺碘酮的重合沉积。

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Ultraviolet photography of the in vivo human cornea unmasks the Hudson-Stähli line and physiologic vortex patterns.对活体人类角膜进行紫外线摄影可揭示哈德逊-施塔利线和生理涡状纹。
Invest Ophthalmol Vis Sci. 2005 Oct;46(10):3616-22. doi: 10.1167/iovs.04-1455.
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