Morishige Naoyuki
Department of Ophthalmology, Yamaguchi University Graduate School of Medicine, Japan.
Nippon Ganka Gakkai Zasshi. 2011 Nov;115(11):1025-35.
We have established a second harmonic generation (SHG) microscopy system for imaging of the human cornea with a mode-locked femtosecond laser and a laser confocal microscope. This SHG microscopy system has allowed us to scan corneal tissue noninvasively ex vivo and to obtain three-dimensional images of corneal collagen lamellae. Such three-dimensional imaging of the normal anterior cornea revealed that collagen lamellae at the anterior stroma are inter-woven and adhere to Bowman membrane with these adherent lamellae being designated "sutural lamellae." Sutural lamellae adhere to Bowman membrane at an angle of approximately 19 degrees, whereas the angle of lamellae in the mid-stroma relative to Bowman membrane is smaller. We hypothesize that the structural unit consisting of both Bowman membrane and the sutural lamellae contributes to the rigidity and anterior curvature of the cornea. SHG imaging of keratoconic corneas revealed an either abnormal or a total lack of structure of the sutural lamellae, suggesting that this abnormality might be related to that of the corneal anterior curvature in such corneas. Furthermore, SHG imaging of corneas affected by stromal edema showed that the structure of the sutural lamellae was maintained, although abnormal collagen signals both above and below Bowman membrane were detected in corneas affected by clinical stromal edema for more than 12 months. SHG imaging of the structure of collagen lamellae in normal and diseased corneas thus has the potential to provide insight both into the mechanism for maintenance of corneal curvature as well as into the pathophysiology of corneal diseases.
我们建立了一种二次谐波产生(SHG)显微镜系统,用于使用锁模飞秒激光和激光共聚焦显微镜对人角膜进行成像。这种SHG显微镜系统使我们能够在离体状态下非侵入性地扫描角膜组织,并获得角膜胶原板层的三维图像。对正常角膜前部的这种三维成像显示,前部基质中的胶原板层相互交织并附着于Bowman膜,这些附着的板层被称为“缝状板层”。缝状板层以约19度的角度附着于Bowman膜,而基质中部的板层相对于Bowman膜的角度较小。我们推测,由Bowman膜和缝状板层组成的结构单元有助于角膜的硬度和前曲率。圆锥角膜的SHG成像显示缝状板层结构异常或完全缺失,表明这种异常可能与此类角膜的角膜前曲率异常有关。此外,对受基质水肿影响的角膜进行SHG成像显示,尽管在临床基质水肿超过12个月的角膜中,在Bowman膜上方和下方均检测到异常的胶原信号,但缝状板层的结构得以维持。因此,对正常和患病角膜中胶原板层结构的SHG成像有可能为深入了解角膜曲率维持机制以及角膜疾病的病理生理学提供线索。