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影响时间选择和时间感知的遗传与非遗传因素分析

Analysis of Genetic and Non-Genetic Factors Influencing Timing and Time Perception.

作者信息

Bartholomew Alex J, Meck Warren H, Cirulli Elizabeth T

机构信息

Center for Applied Genomics and Precision Medicine, Duke University School of Medicine, Durham, NC, 27708, United States of America.

Department of Psychology and Neuroscience, Duke University, Durham, NC, 27708, United States of America.

出版信息

PLoS One. 2015 Dec 7;10(12):e0143873. doi: 10.1371/journal.pone.0143873. eCollection 2015.

Abstract

Performance on different psychophysical tasks measuring the sense of time indicates a large amount of individual variation in the accuracy and precision of timing in the hundredths of milliseconds-to-minutes range. Quantifying factors with an influence on timing is essential to isolating a biological (genetic) contribution to the perception and estimation of time. In the largest timing study to date, 647 participants completed a duration-discrimination task in the sub-second range and a time-production task in the supra-second range. We confirm the stability of a participant's time sense across multiple sessions and substantiate a modest sex difference on time production. Moreover, we demonstrate a strong correlation between performance on a standardized cognitive battery and performance in both duration-discrimination and time-production tasks; we further show that performance is uncorrelated with age after controlling for general intelligence. Additionally, we find an effect of ethnicity on time sense, with African Americans and possibly Hispanics in our cohort differing in accuracy and precision from other ethnic groups. Finally, a preliminary genome-wide association and exome chip study was performed on 148 of the participants, ruling out the possibility for a single common variant or groups of low-frequency coding variants within a single gene to explain more than ~18% of the variation in the sense of time.

摘要

在测量时间感知的不同心理物理学任务中的表现表明,在从百分之一毫秒到分钟的时间范围内,计时的准确性和精确性存在大量个体差异。量化对计时有影响的因素对于分离出对时间感知和估计的生物学(遗传)贡献至关重要。在迄今为止规模最大的计时研究中,647名参与者完成了亚秒范围内的持续时间辨别任务和超秒范围内的时间生成任务。我们证实了参与者的时间感知在多个测试环节中的稳定性,并证实了在时间生成方面存在适度的性别差异。此外,我们证明了标准化认知测试组合的表现与持续时间辨别和时间生成任务的表现之间存在很强的相关性;我们进一步表明,在控制了一般智力之后,表现与年龄无关。此外,我们发现种族对时间感知有影响,我们队列中的非裔美国人以及可能的西班牙裔在准确性和精确性方面与其他种族群体不同。最后,对148名参与者进行了初步的全基因组关联和外显子芯片研究,排除了单个常见变体或单个基因内的低频编码变体组解释超过约18%的时间感知变异的可能性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/acb8/4671567/bddb9744f75c/pone.0143873.g001.jpg

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