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[作为摄像控制台的裂隙灯:视频文章]

[The slit lamp as videography console : Video article].

作者信息

Gellrich M-M

机构信息

Augenarztpraxis Kellinghusen, Lehmbergstr. 31, 25548, Kellinghusen, Deutschland.

出版信息

Ophthalmologe. 2018 Oct;115(10):885-892. doi: 10.1007/s00347-018-0755-4.

Abstract

BACKGROUND

Today's slit lamps have been optimized to realise the principle of focal illumination. When doing clinical work the result is that the slit lamp can be operated simply by using intuition; however, other applications are excluded due to the rigid construction principle. These other applications are summarized in the accompanying film (available online).

METHODS

First, the slit lamp's classical fields of application are shown. Thereafter, a description follows of how modern methods of image processing and also simple alterations in the slit lamp illumination and observation optics open up exciting new perspectives for diagnostics and documentation.

RESULTS

By relying on the freely available image processing program Hugin, conventional use of the illumination and observation units can generate much larger panoramic views of the anterior parts of the eye. By using an ophthalmoscope as the light source, early stage keratoconus can be diagnosed by leaving the slit lamp's observation unit unchanged and noting the arrangement of Purkinje images 1, 2 and 4. With the same arrangement a relative afferent pupil deficit can be reliably detected. If the observation optics are changed by holding a corrective concave lens in front of the slit lamp's objective lens, the plane of focus can be shifted to capture oculoplastic and strabismus findings. Finally, the film shows that the slit lamp in its present form has much less potential than a future-oriented fundus videography.

CONCLUSION

By relying on thorough knowledge of the slit lamp's fundamental optics it is possible to suitably document all essential fields of ophthalmology using slit lamp videography. Slit lamp videography opens up a wide range of documentation possibilities, especially for the routine clinical work of general ophthalmologists.

摘要

背景

如今的裂隙灯已得到优化,以实现焦点照明原理。在临床工作中,结果是裂隙灯仅凭直觉即可操作;然而,由于其固定的构造原理,其他应用被排除在外。这些其他应用总结于随附的影片中(可在线获取)。

方法

首先,展示裂隙灯的经典应用领域。此后,描述现代图像处理方法以及裂隙灯照明和观察光学系统的简单改变如何为诊断和记录开辟令人兴奋的新视角。

结果

依靠免费的图像处理程序Hugin,照明和观察单元的常规使用可以生成更大的眼前部全景视图。通过使用检眼镜作为光源,在裂隙灯观察单元不变的情况下,通过观察普尔钦耶图像1、2和4的排列可诊断早期圆锥角膜。在相同设置下,可以可靠地检测到相对传入性瞳孔障碍。如果通过在裂隙灯物镜前手持矫正凹透镜来改变观察光学系统,则可以移动焦平面以捕捉眼整形和斜视的表现。最后,影片表明,当前形式的裂隙灯与面向未来的眼底摄像相比,潜力要小得多。

结论

依靠对裂隙灯基本光学原理的深入了解,使用裂隙灯摄像可以适当地记录眼科的所有重要领域。裂隙灯摄像开辟了广泛的记录可能性,特别是对于普通眼科医生的日常临床工作。

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