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What is the best fixation target? The effect of target shape on stability of fixational eye movements.

机译:最佳固视目标是什么?目标形状对注视眼运动稳定性的影响。

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摘要

People can direct their gaze at a visual target for extended periods of time. Yet, even during fixation the eyes make small, involuntary movements (e.g. tremor, drift, and microsaccades). This can be a problem during experiments that require stable fixation. The shape of a fixation target can be easily manipulated in the context of many experimental paradigms. Thus, from a purely methodological point of view, it would be good to know if there was a particular shape of a fixation target that minimizes involuntary eye movements during fixation, because this shape could then be used in experiments that require stable fixation. Based on this methodological motivation, the current experiments tested if the shape of a fixation target can be used to reduce eye movements during fixation. In two separate experiments subjects directed their gaze at a fixation target for 17 s on each trial. The shape of the fixation target varied from trial to trial and was drawn from a set of seven shapes, the use of which has been frequently reported in the literature. To determine stability of fixation we computed spatial dispersion and microsaccade rate. We found that only a target shape which looks like a combination of bulls eye and cross hair resulted in combined low dispersion and microsaccade rate. We recommend the combination of bulls eye and cross hair as fixation target shape for experiments that require stable fixation.
机译:人们可以将视线长时间瞄准视觉目标。但是,即使在注视过程中,眼睛也会进行小的非自愿运动(例如震颤,漂移和微扫视)。在需要稳定固定的实验过程中,这可能是个问题。固定目标的形状可以在许多实验范例的背景下轻松操作。因此,从纯粹的方法论观点出发,最好知道是否存在特定形状的固定目标,该固定目标可以最大程度地减少固定过程中眼睛的不自主运动,因为这种形状可以用于需要稳定固定的实验中。基于这种方法论动机,当前的实验测试了注视目标的形状是否可用于减少注视期间的眼球运动。在两个单独的实验中,受试者在每次试验中将视线对准注视目标17 s。固定目标的形状因试验而异,并且是从一组七个形状中得出的,文献中经常报道了这种形状的用途。为了确定注视的稳定性,我们计算了空间色散和微扫视速率。我们发现,只有目标形状看起来像靶心和十字线的组合,才导致组合的低色散和微扫视速率。对于需要稳定固定的实验,我们建议将靶心和十字线组合为固定目标形状。

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