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Effect of Peripheral Defocus on Axial Eye Growth and Modulation of Refractive Error in Hyperopes: Protocol for a Nonrandomized Clinical Trial

机译:散焦对远视眼轴生长和屈光调节的影响:一项非随机临床试验的协议

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Background Hyperopia occurs due to insufficient ocular growth and a failure to emmetropize in childhood. In anisohyperopia, it is unclear why one eye may remain hyperopic while the fellow eye grows toward an emmetropic state. Animal studies have shown that manipulating peripheral defocus through optical means while simultaneously providing correct axial focus can either discourage or encourage axial eye growth to effectively treat myopia or hyperopia, respectively. Myopia progression and axial eye growth can be significantly reduced in children and adolescents through the use of multifocal contact lenses. These contact lenses correct distance central myopia while simultaneously imposing relative peripheral myopic defocus. The effect of correcting distance central hyperopia while simultaneously imposing relative peripheral hyperopic defocus is yet to be elucidated in humans. Objective The objective of our study is to understand the natural progression of axial eye growth and refractive error in hyperopes and anisohyperopes and to establish whether axial eye growth and refractive error can be modified using multifocal contact lenses in hyperopes and anisohyperopes. Methods There are 3 elements to the program of research. First, the natural progression of axial eye growth and refractive error will be measured in spectacle-wearing hyperopic and anisohyperopic subjects aged between 5 and 20 years. In other words, the natural growth of the eye will be followed without any intervention. Second, as a paired-eye control study, anisohyperopes aged between 8 and 16 years will be fitted with a center-near multifocal design contact lens in their more hyperopic eye and a single-vision contact lens in the fellow eye if required. The progression of axial eye growth and refractive error will be measured and compared. Third, subjects aged between 8 and 16 years with similar levels of hyperopia in each eye will be fitted with center-near multifocal design contact lenses in each eye; the progression of axial eye growth and refractive error in these subjects will be measured and compared with those of subjects in the natural progression study. Results Recruitment commenced on 6 June 2016 and was completed on 8 April 2017. We estimate the data collection to be completed by April 2020. Conclusions This trial will establish whether axial eye growth can be accelerated in children with hyperopia by imposing relative peripheral hyperopic defocus using center-near multifocal contact lenses.
机译:背景远视是由于儿童眼部发育不足和无法正视所致。在异性近视眼中,尚不清楚为什么一只眼睛在保持正视状态而另一只眼睛成长。动物研究表明,通过光学手段操纵周围散焦,同时提供正确的轴向焦点,可以阻止或鼓励轴向眼的生长,以分别有效地治疗近视或远视。通过使用多焦点隐形眼镜,可以显着减少儿童和青少年的近视进展和眼轴生长。这些隐形眼镜可矫正远距离近视,同时对周围近视进行散焦。在人类中还没有阐明在校正远距离中央远视的同时施加相对周边远视散焦的效果。目的我们的研究目的是了解远视和异性眼的中轴眼生长和屈光不正的自然进展,并确定是否可以在远视和异性眼中使用多焦点隐形眼镜改变眼轴的生长和屈光度。方法研究计划包括三个要素。首先,将对年龄在5到<20岁之间的配戴眼镜的远视和非近视受试者进行眼轴自然生长和屈光不正的自然进程的测量。换句话说,无需任何干预即可跟随眼睛的自然生长。其次,作为一项双眼对照研究,年龄在8至<16岁之间的异性眼盲将在他们的远视眼中配戴中心近视多焦点设计隐形眼镜,并在需要时在另一只眼中配戴单视场隐形眼镜。将测量和比较眼轴生长和屈光不正的进展。第三,每只眼睛的近视程度相似的8至<16岁年龄段的受试者将在每只眼睛中配备近中近视多焦点设计隐形眼镜;将测量这些受试者的眼轴生长和屈光不正的进展,并将其与自然进展研究中的受试者进行比较。结果招募工作于2016年6月6日开始,于2017年4月8日完成。我们估计数据收集工作将于2020年4月完成。结论该试验将确定是否可以通过施加相对周边远视散焦来加速远视儿童的眼轴生长。中央近距多焦点隐形眼镜。

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