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首页> 外文期刊>Journal of biomedical optics >New pediatric vision screener employing polarization-modulated, retinal-birefringence-scanning-based strabismus detection and bull's eye focus detection with an improved target system: opto-mechanical design and operation
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New pediatric vision screener employing polarization-modulated, retinal-birefringence-scanning-based strabismus detection and bull's eye focus detection with an improved target system: opto-mechanical design and operation

机译:新型儿科视力筛查仪,采用基于偏振调制,基于视网膜双折射扫描的斜视和靶心检测以及改进的目标系统:光机械设计和操作

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摘要

Amblyopia ("lazy eye") is a major public health problem, caused by misalignment of the eyes (strabismus) or defocus. If detected early in childhood, there is an excellent response to therapy, yet most children are detected too late to be treated effectively. Commercially available vision screening devices that test for amblyo-pia's primary causes can detect strabismus only indirectly and inaccurately via assessment of the positions of external light reflections from the cornea, but they cannot detect the anatomical feature of the eyes where fixation actually occurs (the fovea). Our laboratory has been developing technology to detect true foveal fixation, by exploiting the birefringence of the uniquely arranged Henle fibers delineating the fovea using retinal birefringence scanning (RBS), and we recently described a polarization-modulated approach to RBS that enables entirely direct and reliable detection of true foveal fixation, with greatly enhanced signal-to-noise ratio and essentially independent of corneal birefringence (a confounding variable with all polarization-sensitive ophthalmic technology). Here, we describe the design and operation of a new pediatric vision screener that employs polarization-modulated, RBS-based strabismus detection and bull's eye focus detection with an improved target system, and demonstrate the feasibility of this new approach.
机译:弱视(“懒惰的眼睛”)是主要的公共健康问题,由眼睛未对准(斜视)或散焦引起。如果在儿童早期发现,对治疗的反应很好,但是大多数儿童被发现太迟而不能得到有效治疗。用于检测弱视的主要病因的市售视觉筛查设备只能通过评估角膜的外部光反射位置来间接和不准确地检测斜视,但它们不能检测实际发生固定的眼睛的解剖特征(中央凹)。我们的实验室一直在开发技术,通过利用视网膜双折射扫描(RBS)来描绘描绘中央凹的独特排列的Henle纤维的双折射来检测真正的中央凹固定,并且我们最近描述了一种偏振调制的RBS方法,该方法可实现完全直接和可靠的检测检测真正的中央凹固定,具有大大提高的信噪比,并且基本上独立于角膜双折射(与所有偏振敏感眼科技术相混淆的变量)。在这里,我们描述了一种新型的儿科视力筛查器的设计和操作,该筛查器采用了偏振调制,基于RBS的斜视检测和靶心检测以及改进的目标系统,并证明了这种新方法的可行性。

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