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对同一只眼睛的重复镜面反射显微镜图像进行逐细胞配准。

Cell-by-cell alignment of repeated specular microscopy images from the same eye.

机构信息

University Eye Hospital, Cornea Reading Center, Freiburg, Germany.

出版信息

PLoS One. 2013;8(3):e59261. doi: 10.1371/journal.pone.0059261. Epub 2013 Mar 14.

Abstract

PURPOSE

Modern specular microscopes (SM) robustly depict the same central area of the corneal endothelium at different time points through a built-in fixation light. However, repeated image acquisitions slightly shift and rotate because of minute changes in head position in the chin and forehead rest. This prevents the manual retrieval of individual corneal endothelial cells (CECs) in repeated measurements because SM images usually lack obvious landmarks. We devised and validated an image registration algorithm that aligns SM images from the same eye to make corresponding CECs coincide.

METHODS

We retrospectively selected 27 image pairs for the presence of significant image overlap. Each image pair had been recorded on the same day and of the same eye. We applied our registration method in each image pair. Two observers independently validated, by means of alternation flicker, that the image pairs had been correctly aligned. We also repeatedly applied our registration method on unrelated image pairs by randomly drawing images and making certain that the images did not originate from the same eye. This was done to assess the specifity of our method.

RESULTS

All automated registrations of the same-day and same-eye image pairs were accurate. However, one single image incorrectly failed to trigger the non-match diagnosis twice in 81 registration attempts between unrelated images. As it turned out, this particular image depicted only 73 CECs. The average number of CECs was 253 (range 73-393).

CONCLUSION

Repeated non-contact SM images can be automatedly aligned so that the corresponding CECs coincide. Any successful alignment can be considered as proof of the retrieval of identical CECs as soon as at least 100 CEC centroids have been identified. We believe our method is the first to robustly confirm endothelial stability in individual eyes.

摘要

目的

现代共聚焦显微镜(SM)通过内置的固定光在不同时间点可靠地描绘角膜内皮的同一中央区域。然而,由于头部在下巴和额托中的微小位置变化,重复的图像采集会略有移位和旋转。这使得在重复测量中无法手动检索单个角膜内皮细胞(CEC),因为 SM 图像通常缺乏明显的标记。我们设计并验证了一种图像配准算法,该算法可对齐来自同一眼睛的 SM 图像,使相应的 CEC 重合。

方法

我们回顾性地选择了 27 对存在明显图像重叠的图像对。每对图像都是在同一天和同一眼睛上记录的。我们在每对图像中应用了我们的配准方法。两位观察者通过交替闪烁独立验证图像对是否已正确对齐。我们还通过随机抽取图像并确保图像不是来自同一眼睛,在不相关的图像对上重复应用我们的配准方法,以评估我们方法的特异性。

结果

所有同一天和同一眼睛的图像对的自动配准都是准确的。然而,在 81 次不相关图像之间的注册尝试中,有一个图像仅错误地未能触发两次不匹配诊断。事实证明,这张特定的图像仅显示了 73 个 CEC。CEC 的平均数量为 253(范围为 73-393)。

结论

可以自动对准重复的非接触 SM 图像,使相应的 CEC 重合。只要至少识别出 100 个 CEC 质心,任何成功的对齐都可以被认为是检索到相同 CEC 的证明。我们相信,我们的方法是第一个能够可靠地确认个体眼睛内皮稳定性的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce26/3597580/e572aa80d741/pone.0059261.g001.jpg

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