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Structural Integrity of Eyes Diagnosed with Amblyopia. The measurement of retinal structure in amblyopia using Optical Coherence Tomography.

机译:诊断为弱视的眼睛的结构完整性。使用光学相干断层扫描技术测量弱视的视网膜结构。

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摘要

Amblyopia is the leading cause of monocular visual impairment in children. Therapy for amblyopia is extremely beneficial in some children but ineffective in others. It is critical that the reasons for this discrepancy are understood. Emerging evidence indicates that current clinical protocols for the diagnosis of amblyopia may not be sufficiently sensitive in identifying individuals who, on more detailed examination, exhibit subtle structural defects of the eye. Presently, the magnitude of this problem is unknown. udThe aim of this study was to establish the prevalence of subtle retinal/optic nerve head defects in eyes diagnosed with amblyopia, to distinguish between possible explanations for the origin of such defects and to investigate the relationship between quantitative measures of retinal structure, retinal nerve fibre layer thickness and optic nerve head dimensions. Using the imaging technique of Optical Coherence Tomography (OCT) retinal structure has been investigated in detail, following the visual pathway across the retina from the fovea, via the paramacular bundle to the optic disc, where peripapillary retinal nerve fibre thickness has been imaged and subjected to detailed measures along with optic disc size and shape. udThe study formed two phases, the first imaging the eyes of visually normal adults and children, comparing them to amblyopes, both adults and children who had completed their treatment. The second phase, a longitudinal study, investigated retinal structure of amblyopic children undertaking occlusion therapy for the first time. By relating pre-therapy quantitative measures to the visual outcome the second phase of the study aimed to examine whether OCT imaging could identify children achieving a poor final outcome. ududThe results show a clear picture of inter-ocular symmetry structure in all individuals, visually normal and amblyopic. Optic disc characteristics revealed no structural abnormalities in amblyopes, in any of the measured parameters, nor was there any association between the level of visual acuity and the measured structure. ududAt the fovea differences were shown to occur in the presence of amblyopia, with thickening of the fovea and reduction of the foveal pit depth. The structural changes were found to be both bilateral and symmetrical with the fellow eye also affected. In the longitudinal phase of the study these changes were demonstrated to a greater extent in children who ¿failed¿ to respond to treatment. This bilateral, symmetrical structural change found at the fovea, which has not been previously reported, cannot therefore be the primary cause of the visual loss which has been diagnosed as amblyopia.
机译:弱视是儿童单眼视力障碍的主要原因。弱视治疗对某些儿童极为有益,而对其他儿童则无效。理解这种差异的原因至关重要。越来越多的证据表明,当前用于诊断弱视的临床方案可能无法足够灵敏地识别那些在更详细的检查中表现出细微眼部结构缺陷的个体。目前,这个问题的严重性尚不清楚。 ud本研究旨在确定弱视患者眼中视网膜/视神经细微隐匿的患病率,以区分造成此类缺陷的可能原因,并探讨定量测量视网膜结构,视网膜神经之间的关系。纤维层厚度和视神经乳头尺寸。使用光学相干断层扫描(OCT)成像技术对视网膜结构进行了详细研究,遵循了从中央凹穿过视网膜的视觉路径,经过黄斑旁束到视神经乳头,对视神经乳头周围的视网膜神经纤维厚度进行了成像和处理详细的测量以及视盘大小和形状。这项研究分为两个阶段,第一个阶段是对视觉正常的成年人和儿童的眼睛进行成像,然后将其与弱视者(完成治疗的成年人和儿童)进行比较。第二阶段是一项纵向研究,首次调查了接受闭塞治疗的弱视儿童的视网膜结构。通过将治疗前的定量措施与视觉效果相关联,研究的第二阶段旨在检查OCT成像是否可以识别出最终结果较差的儿童。 ud ud结果清楚地显示了所有正常视觉和弱视患者的眼间对称结构。视盘特征表明,在任何测量参数中,弱视都没有结构异常,视敏度水平与测量结构之间也没有任何关联。 ud ud在中央凹处显示弱视存在差异,中央凹增厚和中央凹坑深度减小。发现结构改变既是双侧的又是对称的,另一只眼也受到影响。在研究的纵向阶段,这些变化在未能对治疗产生反应的儿童中得到了更大的证明。因此,先前未曾报道过的在中央凹处发现的这种双侧对称的结构变化因此不能成为视力丧失的主要原因,该视力丧失已被诊断为弱视。

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  • 作者

    Bruce Alison;

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  • 年度 2010
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  • 正文语种 en
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