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The precision of temporal judgement:milliseconds, many minutes, and beyond

机译:时间判断的精度:毫秒,几分钟甚至更长时间

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摘要

The principle that the standard deviation of estimates scales with the mean estimate, commonly known as the scalar property, is one of the most broadly accepted fundamentals of interval timing. This property is measured using the coefficient of variation (CV) calculated as the ratio between the standard deviation and the mean. In 1997, John Gibbon suggested that different time measurement mechanisms may have different levels of absolute precision, and would therefore be associated with different CVs. Here, we test this proposal by examining the CVs produced by human subjects timing a broad range of intervals (68 ms to 16.7 min). Our data reveal no evidence for multiple mechanisms, but instead show a continuous logarithmic decrease in CV as timed intervals increase. This finding joins other recent reports in demonstrating a systematic violation of the scalar property in timing data. Interestingly, the estimated CV of circadian judgements fits onto the regression of decreasing CV, suggesting a link between short interval and circadian timing mechanisms.
机译:估计值的标准偏差与平均估计值成比例的原理(通常称为标量属性)是间隔定时的最广泛接受的基础之一。使用变异系数(CV)来测量此属性,变异系数(CV)计算为标准偏差与平均值之间的比率。 1997年,约翰·吉本(John Gibbon)提出,不同的时间测量机制可能具有不同的绝对精度水平,因此会与不同的CV相关联。在这里,我们通过检查人类受试者产生的CV来测试该建议,这些受试者的计时间隔很宽(68 ms至16.7 min)。我们的数据没有发现多种机制的证据,而是随着时间间隔的增加,CV连续对数下降。这一发现与其他最近的报告一起证明了对时序数据中标量属性的系统性违反。有趣的是,昼夜节律判断的估计CV值与CV递减的回归值吻合,表明短间隔与昼夜节律时间机制之间存在联系。

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