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Dynamic Light Scattering as an Objective Non-invasive Method in Veterinary Ophthalmic Diagnosis and Research

机译:动态光散射作为兽医眼科诊断和研究中的客观非侵入方法

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The absence of verbal feedback, available from most human patients, is a major limitation in veterinary diagnosis in general and in the evaluation of ophthalmic lens opacity in particular. A novel compact dynamic light scattering (DLS) instrument, developed at NASA, offers significant mitigation to this limitation. It not only yields objective repeatable non-invasive estimation of lens opacity (cataract) but also provides insight into the nature of chemical and physical alterations in the lens and other eye structures. For examples, DLS measurements of the cataractous lens may be interpreted in terms of alpha crystalline protein size. In contrast to most conventional methods, the examination results are numerical and readily accommodate statistical analysis. We present results of DLS measurements in laboratory rabbits with naphthalene induced cataracts, rodents with genetically conditioned hypertension and/or diabetes mellitus; as well as applications of the DLS method in clinical veterinary patients. Use of DLS in examination of phacoemulsification fluid, urine and other biological materials, and potential applications in ocular toxicology will also be discussed.
机译:从大多数人类患者提供的缺乏口头反馈,是一般兽医诊断的主要限制,特别是对眼科镜片不透明的评估。在NASA开发的新型紧凑型动态光散射(DLS)仪器对此限制提供了显着的缓解。它不仅产生客观的可重复的无侵入性估计透镜不透明度(白内障),而且还提供了对镜头和其他眼部结构中的化学和物理改变的性质的洞察力。例如,可以在α结晶蛋白质尺寸方面解释多态晶状体的DLS测量。与大多数常规方法相比,检查结果是数值的,并且容易适应统计分析。我们在实验室兔中展示DLS测量的结果,萘诱导的白内障,啮齿动物有遗传调节的高血压和/或糖尿病;以及DLS方法在临床兽医患者中的应用。还将讨论使用DLS在沉重乳化液,尿液和其他生物材料的检查中,以及在眼科毒理学中的潜在应用。

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