Zhou Xiangtian, Xie Jing, Shen Meixiao, Wang Jianhua, Jiang Liqin, Qu Jia, Lu Fan
School of Optometry and Ophthalmology and Eye Hospital, Wenzhou Medical College, Wenzhou, Zhejiang, 325003, China.
Vision Res. 2008 Apr;48(9):1137-43. doi: 10.1016/j.visres.2008.01.030. Epub 2008 Mar 17.
To demonstrate that high-resolution biometry is possible in mouse eyes in vivo, using real-time OCT with focal plane advancement by a stepper motor.
OCT images of eyes were taken from nine 29-day-old C57BL/6 mice(18 eyes) on two consecutive days. A custom-built real-time OCT instrument with a stepper motor was used to advance the focal plane from the corneal apex to the retina along the ocular axis. The ocular dimensions were determined by advancement of the stepper motor as it displayed on the OCT scan images.
OCT images of the entire eye, including the cornea, anterior chamber, lens, vitreous chamber, and retina, were successfully obtained from both eyes of all mice. The measured average corneal thickness from 18 eyes at the age of 29 days was 90.8+/-4.6microm, anterior chamber depth 707.4+/-21.4microm, lens thickness 1558.7+/-18.0microm, vitreous chamber depth 707.4+/-21.4microm and retinal thickness was 186.9+/-15.1microm. Total axial length (from the corneal apex to the nerve fiber layer of the retina) was 3003.3+/-44.1microm. None of them were significantly different if measured on two consecutive days, and no significant differences were found between measurements in the left and right eyes.
By focal plane advancement of a real-time OCT instrument through the mouse eye, highly repeatable measurements of the ocular dimensions were obtained. This novel method may be used to study small animal models of normal and abnormal eye development.
利用配备步进电机的实时光学相干断层扫描(OCT)技术在焦平面推进的情况下,证明在活体小鼠眼中进行高分辨率生物测量是可行的。
连续两天对9只29日龄的C57BL/6小鼠(18只眼)进行眼部OCT成像。使用一台配备步进电机的定制实时OCT仪器,沿着眼轴将焦平面从角膜顶点推进到视网膜。通过步进电机在OCT扫描图像上的推进来确定眼部尺寸。
成功获取了所有小鼠双眼包括角膜、前房、晶状体、玻璃体腔和视网膜的全眼OCT图像。18只29日龄小鼠眼睛的平均角膜厚度测量值为90.8±4.6微米,前房深度为707.4±21.4微米,晶状体厚度为1558.7±18.0微米,玻璃体腔深度为707.4±21.4微米,视网膜厚度为186.9±15.1微米。总眼轴长度(从角膜顶点到视网膜神经纤维层)为3003.3±44.1微米。如果在连续两天进行测量,这些测量值均无显著差异,并且左右眼测量值之间也未发现显著差异。
通过实时OCT仪器在小鼠眼中推进焦平面,获得了高度可重复的眼部尺寸测量结果。这种新方法可用于研究正常和异常眼睛发育的小动物模型。