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液晶显示器的时间特性:对视科学实验的影响。

Temporal properties of liquid crystal displays: implications for vision science experiments.

机构信息

Schepens Eye Research Institute, Harvard Medical School, Boston, Massachusetts, United States of America.

出版信息

PLoS One. 2012;7(9):e44048. doi: 10.1371/journal.pone.0044048. Epub 2012 Sep 11.

Abstract

Liquid crystal displays (LCD) are currently replacing the previously dominant cathode ray tubes (CRT) in most vision science applications. While the properties of the CRT technology are widely known among vision scientists, the photometric and temporal properties of LCDs are unfamiliar to many practitioners. We provide the essential theory, present measurements to assess the temporal properties of different LCD panel types, and identify the main determinants of the photometric output. Our measurements demonstrate that the specifications of the manufacturers are insufficient for proper display selection and control for most purposes. Furthermore, we show how several novel display technologies developed to improve fast transitions or the appearance of moving objects may be accompanied by side-effects in some areas of vision research. Finally, we unveil a number of surprising technical deficiencies. The use of LCDs may cause problems in several areas in vision science. Aside from the well-known issue of motion blur, the main problems are the lack of reliable and precise onsets and offsets of displayed stimuli, several undesirable and uncontrolled components of the photometric output, and input lags which make LCDs problematic for real-time applications. As a result, LCDs require extensive individual measurements prior to applications in vision science.

摘要

液晶显示器 (LCD) 目前正在大多数视觉科学应用中取代以前占主导地位的阴极射线管 (CRT)。虽然 CRT 技术的特性在视觉科学家之间广为人知,但许多从业者对 LCD 的光度和时间特性并不熟悉。我们提供基本理论,介绍评估不同类型的 LCD 面板的时间特性的测量方法,并确定光度输出的主要决定因素。我们的测量结果表明,对于大多数目的而言,制造商的规格不足以进行正确的显示选择和控制。此外,我们展示了几种为改善快速转换或运动物体的外观而开发的新型显示技术可能会在视觉研究的某些领域带来副作用。最后,我们揭示了一些令人惊讶的技术缺陷。在视觉科学的几个领域,使用 LCD 可能会导致问题。除了众所周知的运动模糊问题外,主要问题是显示刺激的可靠和精确起始和结束缺乏、光度输出的几个不理想和不受控制的分量以及输入滞后,这使得 LCD 在实时应用中出现问题。因此,在将 LCD 应用于视觉科学之前,需要进行广泛的个别测量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/78da/3439495/8ea75720c326/pone.0044048.g001.jpg

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