Tandogan Tamer, Khoramnia Ramin, Choi Chul Young, Scheuerle Alexander, Wenzel Martin, Hugger Philipp, Auffarth Gerd U
David J Apple International Laboratory for Ocular Pathology and International Vision Correction Research Centre (IVCRC), Department of Ophthalmology, University of Heidelberg, Im Neuenheimer Feld 400, 69120, Heidelberg, Germany.
Department of Ophthalmology, Kangbuk Samsung Hospital, Sungkyunkwan University School of Medicine, Pyeong-dong, Jongno-gu, Seoul, South Korea.
BMC Ophthalmol. 2015 Nov 25;15:170. doi: 10.1186/s12886-015-0149-1.
The opacification of hydrophilic intraocular lenses (IOLs) is a very rare complication in terms of absolute numbers. We report on the analyses of opacified Euromaxx ALI313Y and ALI313 IOLs (Argonoptics, Germany) using light and scanning electron microscopy, X-ray spectroscopy and optical bench analysis.
Opacified Euromaxx ALI313Y and ALI313 IOLs were explanted after patients presented with a decrease in visual acuity. The explants were sent to our laboratory and examined using light and scanning electron microscopy. The composition of the deposits was analysed using X-ray spectroscopy. The optical quality of the intraocular lens (IOL) was assessed using the OptiSpheric IOL PRO optical bench (Trioptics GmbH Wedel, Germany). Modulation transfer function (MTF) was measured at all spatial frequencies and United States Air Force (USAF) 1951 resolution target pictures were documented.
Macroscopically, the entire optic was opacified in all IOLs. Light and scanning electron microscopy revealed numerous fine, granular, crystalline-like deposits, which were always distributed in a line parallel to the anterior and posterior surfaces of the IOLs. X-ray spectroscopy could prove the deposits consisted of Calcium and Phosphate. Measurements in the optical bench showed deterioration of MTF values at all spatial frequencies and the USAF target pictures demonstrated a significant reduction of brightness as well as resolution with the opacified IOLs.
The calcification of hydrophilic IOLs only occurs rarely. The exact chemical composition of the deposits can be assessed by means of X-ray spectroscopy. Optical quality analysis of the explanted Euromaxx ALI313Y and ALI313 IOLs showed significant reduction of MTF values, which was confirmed by USAF target pictures.
就绝对数量而言,亲水性人工晶状体(IOL)的混浊是一种非常罕见的并发症。我们报告了使用光学显微镜、扫描电子显微镜、X射线光谱和光学平台分析对混浊的Euromaxx ALI313Y和ALI313人工晶状体(德国氩气光学公司)进行的分析。
在患者视力下降后取出混浊的Euromaxx ALI313Y和ALI313人工晶状体。将取出的晶状体送至我们的实验室,使用光学显微镜和扫描电子显微镜进行检查。使用X射线光谱分析沉积物的成分。使用OptiSpheric IOL PRO光学平台(德国韦德尔的Trioptics GmbH公司)评估人工晶状体(IOL)的光学质量。在所有空间频率下测量调制传递函数(MTF),并记录美国空军(USAF)1951分辨率目标图片。
宏观上,所有人工晶状体的整个光学部均混浊。光学显微镜和扫描电子显微镜显示有许多细小的、颗粒状的、晶体样沉积物,这些沉积物总是平行于人工晶状体的前表面和后表面呈线状分布。X射线光谱可以证明沉积物由钙和磷组成。光学平台测量显示,在所有空间频率下MTF值均下降,美国空军目标图片显示,混浊的人工晶状体亮度和分辨率均显著降低。
亲水性人工晶状体的钙化很少发生。沉积物的确切化学成分可通过X射线光谱进行评估。对取出的Euromaxx ALI313Y和ALI313人工晶状体进行的光学质量分析显示MTF值显著降低,这一点得到了美国空军目标图片的证实。