显示类型的图像分辨率对可调节微波动的影响。

Niall J Hynes, Matthew P Cufflin, Karen M Hampson, Edward Ah Mallen
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引用次数: 2

摘要

目的:确定可调节微波动(AMFs)是否受到所观察的显示类型的图像分辨率的影响。对屈光不正的影响也进行了研究。方法:20名参与者(10名近视和10名近视)在四种不同的显示器上观察一个目标:纸张、智能手机、电子阅读器和视觉显示单元屏幕(VDU),同时使用连续记录的红外自动折射仪测量他们的调节反应。分析了调节响应和AMF措施,包括低频分量(LFC)、高频分量(HFC)和AMF的均方根(RMS)。结果:与VDU和智能手机相比,纸张刺激的LFC功率显著增加。与四种显示器相比,近视眼表现出明显更高的LFC和平均调节反应。发现最低和最高分辨率显示器之间的平均AR有显着差异。图像分辨率越高,平均AR越高。HFC和RMS调节不受显示类型的影响。结论:平均调节反应和平均LFC功率随显示类型的不同而不同。更高分辨率的设备显示出适应适应性需求的滞后减少;然而,这可能会导致近视适应更高分辨率的显示类型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

The effect of image resolution of display types on accommodative microfluctuations.

The effect of image resolution of display types on accommodative microfluctuations.

The effect of image resolution of display types on accommodative microfluctuations.

The effect of image resolution of display types on accommodative microfluctuations.

Purpose: To determine whether accommodative microfluctuations (AMFs) are affected by the image resolution of the display type being observed. The effect of refractive error is also examined.

Methods: Twenty participants, (10 myopes and 10 emmetropes) observed a target on four different displays: paper, smartphone, e-reader and visual display unit screen (VDU), whilst their accommodative responses were measured using a continuous recording infrared autorefractor. The accommodative response and AMF measures comprising low frequency components (LFC), high frequency components (HFC) and the root mean square (RMS) of the AMFs were analysed.

Results: A significant increase in LFC power was observed for the paper stimulus when compared to the VDU and smartphone conditions. Myopes demonstrated a significantly higher LFC and mean accommodative response compared to emmetropes across the four displays. A significant difference in the mean AR between the displays with the lowest and highest resolution was found. A higher mean AR was found with higher resolution of the image. The HFC and RMS accommodation were not affected by display type.

Conclusion: The mean accommodative response and the mean LFC power appear to respond differently depending on the type of display in use. Higher resolution devices showed a reduced lag of accommodation to the accommodative demand; however, this may cause a lead of accommodation in myopes for higher resolution display types.

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