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A Protective Eye Shield for Prevention of Media Opacities during Small Animal Ocular Imaging

机译:在小动物眼部成像过程中防止介质不透明的防护眼罩

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摘要

Optical coherence tomography (OCT), scanning laser ophthalmoscopy (SLO) and other non-invasive imaging techniques are increasingly used in eye research to document disease-related changes in rodent eyes. Corneal dehydration is a major contributor to the formation of ocular opacities that can limit the repeated application of these techniques to individual animals. General anesthesia is usually required for imaging, which is accompanied by the loss of the blink reflex. As a consequence, the tear film cannot be maintained, drying occurs and the cornea becomes dehydrated. Without supplemental hydration, structural damage to the cornea quickly follows. Soon thereafter, anterior lens opacities can also develop. Collectively these changes ultimately compromise image quality, especially for studies involving repeated use of the same animal over several weeks or months. To minimize these changes, a protective shield was designed for mice and rats that prevent ocular dehydration during anesthesia. The eye shield, along with a semi-viscous ophthalmic solution, is placed over the corneas as soon as the anesthesia immobilizes the animal. Eye shields are removed for only the brief periods required for imaging and then reapplied before the fellow eye is examined. As a result, the corneal surface of each eye is exposed only for the time required for imaging. The device and detailed methods described here minimize the corneal and lens changes associated with ocular surface desiccation. When these methods are used consistently, high quality images can be obtained repeatedly from individual animals.
机译:光学相干断层扫描(OCT),扫描激光检眼镜(SLO)和其他非侵入性成像技术在眼科研究中越来越多地用于记录啮齿动物眼中与疾病相关的变化。角膜脱水是导致眼部混浊的主要因素,这种混浊会限制将这些技术重复应用于个体动物。成像通常需要全身麻醉,同时伴有眨眼反射的丧失。结果,不能保持泪膜,发生干燥并且角膜脱水。如果没有补充水合作用,对角膜的结构破坏很快发生。此后不久,前镜混浊也会发展。这些变化最终会最终损害图像质量,特别是对于涉及在数周或数月内重复使用同一只动物的研究而言。为了最大程度地减少这些变化,为小鼠和大鼠设计了一种防护罩,可防止麻醉期间的眼部脱水。一旦麻醉使动物固定,就将眼罩与半粘性眼药水一起放在角膜上。仅在成像所需的短暂时间内取下眼罩,然后在检查另一只眼睛之前重新应用。结果,仅在成像所需的时间内暴露每只眼睛的角膜表面。本文所述的设备和详细方法将与眼表干燥相关的角膜和晶状体变化减至最小。始终如一地使用这些方法时,可以从单个动物中反复获得高质量的图像。

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