Bernal Andres, Parel Jean-Marie, Manns Fabrice
Ophthalmic Biophysics Center, Bascom Palmer Eye Institute, University of Miami Miller School of Medicine, 1638 NW 10th Avenue, Miami, FL 33136, USA.
Invest Ophthalmol Vis Sci. 2006 Nov;47(11):4708-13. doi: 10.1167/iovs.06-0441.
To image the posterior zonular attachment site by using environmental scanning electron microscopy (ESEM).
A custom-made device was designed to mount human cadaveric lenses, with the zonule, ciliary body, and sclera attached, inside an environmental scanning electron microscope (ESEM). The mount was designed to allow radial stretching to enhance exposure of the accommodation apparatus. Seven fresh human eye bank eyes (age: 62-82 years; 24-48 hours after death) were dissected, mounted, and imaged in wet mode. The insertion site of the posterior zonule was examined.
Detailed pictures of the accommodation apparatus were obtained in all eyes. A strong relation between the posterior zonule and the anterior hyaloid membrane was observed. Anterior view micrographs showed that posterior zonular fibers originate from the ciliary body and anchor in the hyaloid membrane. From the point of insertion, the fibers continue on their course toward the posterior lens capsule in the plane of the hyaloid membrane.
Contrary to the classic description, the majority of posterior zonular fibers are not attached directly to the posterior lens capsule, but are anchored to the anterior hyaloid membrane on their path from the ciliary body to the posterior capsule. This finding is in good agreement with several previous observations and models that suggest support of the posterior lens surface during accommodation.
使用环境扫描电子显微镜(ESEM)对后晶状体悬韧带附着部位进行成像。
设计了一种定制装置,用于将附着有悬韧带、睫状体和巩膜的人类尸体晶状体安装在环境扫描电子显微镜(ESEM)内。该装置设计为允许径向拉伸,以增强调节装置的暴露。对7只新鲜的人类眼库眼球(年龄:62 - 82岁;死后24 - 48小时)进行解剖、安装,并在湿模式下成像。检查后晶状体悬韧带的插入部位。
在所有眼球中均获得了调节装置的详细图像。观察到后晶状体悬韧带与前玻璃体膜之间存在密切关系。前视图显微照片显示,后晶状体悬韧带纤维起源于睫状体并锚定在玻璃体膜上。从插入点开始,纤维在玻璃体膜平面内继续向后晶状体囊的方向延伸。
与经典描述相反,大多数后晶状体悬韧带纤维并非直接附着于后晶状体囊,而是在从睫状体到后囊的路径上锚定在前玻璃体膜上。这一发现与先前的一些观察结果和模型非常吻合,这些观察结果和模型表明在调节过程中后晶状体表面得到了支撑。