首页> 外文期刊>Ophthalmic & physiological optics: the journal of the British College of Ophthalmic Opticians (Optometrists) >Experimental investigation of accommodation in eyes fit with multifocal contact lenses using a clinical auto‐refractor
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Experimental investigation of accommodation in eyes fit with multifocal contact lenses using a clinical auto‐refractor

机译:使用临床自动折射器的多焦点隐形眼镜对眼睛的住宿实验研究

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Abstract Purpose Multifocal or multi‐zone contact lenses are increasingly being fit to young eyes in an attempt to control myopia progression. However, success in achieving this aim may depend on how much the eye accommodates. The purpose of the current work was to evaluate the ability of an open‐field clinical autorefractor to measure on‐axis refractive state and accommodation in eyes fit with multifocal contact lenses ( CL s). Methods Refractive state was measured with a Grand Seiko WAM ‐5500 autorefractor ( www.grandseiko.com ) and a clinical Shack‐Hartmann Complete Ophthalmic Analysis System ( COAS ) aberrometer ( www.wfsci.com ) in subjects fit bilaterally with single vision aspheric contact lenses, centre distance, and centre near zonal multifocal CL s, and an experimental myopia control multi‐zone bifocal CL s (MiSight). Autorefractor measurements were obtained when aligned with the pupil centre, pupil margin, and mid‐periphery. Accuracy of refractive state measurements was evaluated using a fully presbyopic (62‐year‐old) dilated (pupil diameter = 7.1 mm) eye measured through known added spherical powers (trial lenses) of +1.00 D to +6.00 D. Refractive state and accommodation were measured for seven young myopic eyes (23.71 ± 2.87 years) with six target vergences ranging from ?0.33 D to ?5.00 D. Results Irrespective of the CL fitted, measured changes in refractive state of the calibration eye were within ≤0.25 D of the added sphere power and the slope (measured refractive state/trial lens power) was approximately ?1.0 D/D for both Shack‐Hartmann ( COAS ) aberrometer and Grand Seiko instruments. Also, the Grand Seiko data were highly repeatable (mean measurement standard deviation = 0.04 D) as long as measurements occurred at the same pupil location, but exhibited a hyperopic bias that increased to +1.00 D when eyes were fit with CL s containing significant negative spherical aberration. Centre and marginal refractive states could differ by 3.00 D due to the combined spherical aberration contained in the eye plus the different CL designs. Measured refractive states of young accommodating eyes also varied with measurement location in the pupil. The accommodation gains were similar at each pupil location, irrespective of contact lens design. Conclusions With consistent sampling at the same pupil location, the open field Grand Seiko clinical autorefractor proved an effective tool for assessing the on‐axis refractive state and accommodative responses of eyes fit with multi‐zone bifocal and multifocal CL s.
机译:摘要目的,多焦点或多区隐形眼镜越来越适合年轻眼睛,试图控制近视近视。然而,实现这一目标的成功可能取决于眼睛有多少。目前工作的目的是评估开放式临床综合反射器测量轴上折射状态和眼睛的住宿的能力,适合多焦点隐形眼镜(CL S)。方法采用大兴精工WAM -5500 AutoreFractor(www.grandseiko.com)测量屈光屈光度和临床棚屋完整的眼科分析系统(COAS)VyeRomer(WWW.WFSCI.com),在受试者中适合单一视力球形触点镜片,中心距离和中心附近的Zonal多焦点Cls,以及实验性近视控制多区双焦点Cl S(毛烫)。当与瞳孔中心,瞳孔边缘和中间周边对齐时,获得了自动反式术测量。通过通过已知的+ 100 d的已知的球形功率(试镜)为+6.00d d,折射状态和住宿测量,评估折射状态测量的折射状态测量的准确性被测量为七个年轻的近视眼(23.71±2.87岁),六个目标符号范围从?0.33d到Δ5.00 d。结果,无论Cl拟合,校准眼的折射状态的测量变化都在≤0.25d中。添加球体和斜坡(测量屈光透镜电源)约为棚屋(COA)VAMERROPER和GRAND SEIKO仪器的1.0 D / D。此外,大师资料数据很高球面像差。中心和边缘屈光状态可能因眼睛中包含的组合球形像差加上不同的CL设计而异。测量的年轻容纳眼睛的屈光状态也随着瞳孔的测量位置而变化。随着隐形眼镜的设计,每次瞳孔位置都有相似的住宿收益。结论在同一瞳孔位置的一致采样,开放式Seiko临床自动除霜器证明了​​一种有效的工具,用于评估轴上折射状态和眼睛的适应性响应与多区双焦点和多焦点Cls。

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