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Utilizing minicomputer technology for low-cost photorefraction: a feasibility study

机译:利用小型计算机技术进行低成本光反效应:可行性研究

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摘要

Eccentric photorefraction is an objective technique to determine the refractive errors of the eye. To address the rise in prevalence of visual impairment, especially in rural areas, a minicomputer-based low-cost infrared photorefractor was developed using off-the-shelf hardware components. Clinical validation revealed that the developed infrared photorefractor demonstrated a linear working range between +4.0 D and −6.0 D at 50 cm. Further, measurement of astigmatism from human eye showed absolute error for cylinder of 0.3 D and high correlation for axis assessment. To conclude, feasibility was shown for a low-cost, portable and low-power driven stand-alone device to objectively determine refractive errors, showing potential for screening applications. The developed photorefractor creates a new avenue for telemedicine for ophthalmic measurements.
机译:偏心光反弹是确定眼睛屈光误差的目标技术。为应对视力障碍普遍存在,特别是在农村地区,采用小型计算机的低成本红外光反措施,采用现成的硬件组件开发。临床验证显示,发育的红外光反措施在50厘米处显示出+ 4.0d和-6.0d之间的线性工作范围。此外,从人眼中的散光测量显示为0.3d的气缸绝对误差,轴评估高度相关性。为了得出结论,低成本,便携式和低功耗驱动的独立设备显示可行性,以客观地确定屈光误差,显示筛选应用的潜力。开发的PhotoreFractor为眼科测量创造了一个新的远程医疗的新大道。

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