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使用三路液晶快门式速示器实现毫秒级分辨率的多次连续图片呈现。

Multiple serial picture presentation with millisecond resolution using a three-way LC-shutter-tachistoscope.

机构信息

MR Centre of Excellence, Medical University of Vienna, Lazarettgasse 14, A-1090 Vienna, Austria.

出版信息

J Neurosci Methods. 2010 Mar 30;187(2):235-42. doi: 10.1016/j.jneumeth.2010.01.016. Epub 2010 Feb 1.

Abstract

Throughout recent years there has been an increasing interest in studying unconscious visual processes. Such conditions of unawareness are typically achieved by either a sufficient reduction of the stimulus presentation time or visual masking. However, there are growing concerns about the reliability of the presentation devices used. As all these devices show great variability in presentation parameters, the processing of visual stimuli becomes dependent on the display-device, e.g. minimal changes in the physical stimulus properties may have an enormous impact on stimulus processing by the sensory system and on the actual experience of the stimulus. Here we present a custom-built three-way LC-shutter-tachistoscope which allows experimental setups with both, precise and reliable stimulus delivery, and millisecond resolution. This tachistoscope consists of three LCD-projectors equipped with zoom lenses to enable stimulus presentation via a built-in mirror-system onto a back projection screen from an adjacent room. Two high-speed liquid crystal shutters are mounted serially in front of each projector to control the stimulus duration. To verify the intended properties empirically, different sequences of presentation times were performed while changes in optical power were measured using a photoreceiver. The obtained results demonstrate that interfering variabilities in stimulus parameters and stimulus rendering are markedly reduced. Together with the possibility to collect external signals and to send trigger-signals to other devices, this tachistoscope represents a highly flexible and easy to set up research tool not only for the study of unconscious processing in the brain but for vision research in general.

摘要

近年来,人们对研究无意识视觉过程的兴趣日益浓厚。通常通过减少刺激呈现时间或视觉掩蔽来实现这种无意识状态。然而,人们越来越关注所使用的呈现设备的可靠性。由于所有这些设备在呈现参数方面都存在很大的可变性,因此视觉刺激的处理取决于显示设备,例如,物理刺激属性的微小变化可能会对感觉系统对刺激的处理以及对刺激的实际体验产生巨大影响。在这里,我们展示了一种定制的三光路液晶高速幕帘视觉时滞仪,它允许进行精确和可靠的刺激呈现实验设置,具有毫秒级分辨率。该时滞仪由三个配备变焦镜头的液晶投影仪组成,可通过内置的反射镜系统将刺激从相邻房间的背投影屏幕上呈现。两个高速液晶快门串联安装在每个投影仪的前面,以控制刺激持续时间。为了从经验上验证预期的特性,使用光电接收器测量光学功率变化的同时,进行了不同的呈现时间序列。获得的结果表明,刺激参数和刺激呈现的干扰可变性明显降低。结合收集外部信号和向其他设备发送触发信号的可能性,该高速幕帘视觉时滞仪不仅代表了一种用于研究大脑无意识处理的高度灵活且易于设置的研究工具,而且代表了一般视觉研究的高度灵活且易于设置的研究工具。

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