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MTF testing for the assessment of spectacle lens image quality and the relationship to visual acuity.

机译:MTF测试用于评估眼镜镜片图像质量以及与视敏度的关系。

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摘要

Optical quality assessment of spectacle lenses has changed very little over the past 50 years, usually consisting of simple power and astigmatism measurements at a few points on the lens. In the past, this was satisfactory since lenses were either single-vision or bifocal where the image quality varies little over the lens. Recently, more complicated lens forms, such as progressive addition lenses (PALs), have gained in popularity. The old testing methods are not adequate to assess the optical quality of such lenses. In a PAL, the power changes continuously from the upper to the lower part of the lens, leading to zones with large amounts of aberration. A means of objectively and accurately measuring the image quality across the aperture of such lenses was required.; The modulation transfer function (MTF) has been used for some time in the precision optics field as a reliable measure of optical system image quality. MTF testing was selected as the basis for a fully-automated, lens measurement instrument. The Spectacle Lens Image Mapper (SLIM) measures and maps the power, astigmatism, prism, MTF, and a new quantity named the maximum predicted visual acuity (MPVA) over the aperture of a spectacle lens. The MTF is obtained thru the Fourier transform of the point spread function produced by the test lens using a high-resolution camera.; Since the MTF is not well understood in the ophthalmic community, a quantitative relationship between the MTF and wearer visual acuity (VA) was desirable. Thus, the MPVA, a measure of the VA reduction that would be experienced by a wearer looking through a given point on a lens, was developed. A clinical study of VA was conducted on four PALs in order to provide validation of the MPVA. Over 80% of the MPVAs were within 2 lines of the measured VA on a standard eye chart and two-thirds were within 1 line, with a number of avenues for improvement already identified.; Many studies using the SLIM have been completed on commercially available PALs. The wide variation in lens quality seen in these studies confirms the effectiveness of and the need for the SLIM.
机译:在过去的50年中,眼镜镜片的光学质量评估几乎没有变化,通常包括简单的屈光度和在镜片上几个点的像散测量。在过去,这是令人满意的,因为镜头是单视场镜头或双焦点镜头,其图像质量在整个镜头上几乎没有变化。近来,更复杂的镜片形式,例如渐进屈光镜片(PAL),已经普及。旧的测试方法不足以评估此类镜片的光学质量。在PAL中,光焦度从透镜的上部到下部连续变化,从而导致像差较大的区域。需要一种客观,准确地测量这种透镜的光圈上的图像质量的方法。调制传递函数(MTF)在精密光学领域已经使用了一段时间,作为光学系统图像质量的可靠度量。选择MTF测试作为全自动镜头测量仪器的基础。眼镜镜片图像映射器(SLIM)可以测量并绘制出镜片的光焦度,像散,棱镜,MTF以及一个新的量,该新量称为最大预测视敏度(MPVA)。通过使用高分辨率相机通过测试透镜产生的点扩展函数的傅立叶变换获得MTF。由于在眼科界对MTF的了解不多,因此需要MTF与配戴者视敏度(VA)之间的定量关系。因此,开发了MPVA,即佩戴者透过镜片上给定点观看时所经历的VA降低的量度。为了对MPVA进行验证,对四个PAL进行了VA的临床研究。在标准视力表中,超过80%的MPVA位于测量的VA的2线以内,三分之二位于1线以内,并且已经确定了许多改善途径。在商用PAL上已经完成了许多使用SLIM的研究。这些研究中看到的镜片质量差异很大,证实了SLIM的有效性和需求。

著录项

  • 作者

    Hadaway, James Benjamin.;

  • 作者单位

    The University of Alabama in Huntsville.;

  • 授予单位 The University of Alabama in Huntsville.;
  • 学科 Physics Optics.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 150 p.
  • 总页数 150
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 光学;
  • 关键词

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