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Measurement accuracy of a stressed contact lens during its relaxation period

机译:放松期间压力隐形眼镜的测量精度

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We examine the dioptric power and transmitted wavefront of a contact lens as it releases its handling stresses. Handling stresses are introduced as part of the contact lens loading process and are common across all contact lens measurement procedures and systems. The latest advances in vision correction require tighter quality control during the manufacturing of the contact lenses. The optical power of contact lenses is one of the critical characteristics for users. Power measurements are conducted in the hydrated state, where the lens is resting inside a solution-filled glass cuvette. In a typical approach, the contact lens must be subject to long settling times prior to any measurements. Alternatively, multiple measurements must be averaged. Apart from potential operator dependency of such approach, it is extremely time-consuming, and therefore it precludes higher rates of testing. Comprehensive knowledge about the settling process can be obtained by monitoring multiple parameters of the lens simultaneously. We have developed a system that combines co-aligned a Shack-Hartmann transmitted wavefront sensor and a time-domain low coherence interferometer to measure several optical and physical parameters (power, cylinder power, aberrations, center thickness, sagittal depth, and diameter) simultaneously. We monitor these parameters during the stress relaxation period and show correlations that can be used by manufacturers to devise methods for improved quality control procedures.
机译:我们在释放其处理应力时,检查屈光度和透射隐形眼镜的波前。作为隐形眼镜装载过程的一部分引入处理应力,并且在所有隐形眼镜测量程序和系统上很常见。视觉校正的最新进展需要在制造隐形眼镜时需要更紧密的质量控制。隐形眼镜的光功率是用户的关键特性之一。在水合状态下进行功率测量,其中透镜在填充溶液玻璃比色皿内搁置。在典型的方法中,在任何测量之前,隐形眼镜必须受到长度沉降的时间。或者,必须平均多次测量。除了这种方法的潜在操作员依赖之外,它是非常耗时的,因此它排除了更高的测试率。可以通过同时监测镜头的多个参数来获得关于沉降过程的全面知识。我们开发了一个系统,该系统结合了协调的Shack-Hartmann传输的波前传感器和时域低相干干涉仪,以便同时测量几种光学和物理参数(电源,汽缸电源,像差,中心厚度,矢状深度和直径) 。我们在应力松弛时期监测这些参数,并显示制造商可以使用的相关性来设计改进的质量控制程序的方法。

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