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Probabilistic Information Modulates the Timed Response Inhibition Deficit in Aging Mice

机译:概率信息调节衰老小鼠的定时反应抑制缺陷。

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摘要

How interval timing is affected by aging constitutes one of the contemporary research questions. There is however a limited number of studies that investigate this research question in animal models of aging. The current study investigated how temporal decision-making is affected by aging. Initially, we trained young (2–3 month-old) and old C57BL/6J male mice (18–19 month-old) independently with short (3 s) and long (9 s) intervals by signaling, in each trial, the hopper associated with the interval that is in effect in that trial. The probability of short and long trials was manipulated (0.25 or 0.75) for different animals in each age group. During testing, both hoppers were illuminated, and thus active trial type was not differentiated. We expected mice to spontaneously combine the independently acquired time interval-location-probability information to adaptively guide their timing behavior in test trials. This adaptive ability and the resultant timing behavior were analyzed and compared between the age groups. Both young and old mice indeed adjusted their timing behavior in an abrupt fashion based on the independently acquired temporal-spatial-probabilistic information. The core timing ability of old mice was also intact. However, old mice had difficulty in terminating an ongoing timed response when the probability for the short trial was higher and this difference disappeared in the group that was exposed to a lower probability of short trials. These results suggest an inhibition problem in old mice as reflected through the threshold modulation process in timed decisions, which is cognitively penetrable to the probabilistic information.
机译:间隔时间如何受到老化的影响构成了当代研究问题之一。但是,在衰老的动物模型中,研究这一研究问题的研究数量有限。当前的研究调查了时效决策如何受到衰老的影响。最初,我们在每个试验中通过信号转导来分别训练短(3 s)和长(9 s)间隔的年轻(2-3月龄)和老C57BL / 6J雄性小鼠(18-19月龄)。漏斗与该试验中有效的间隔相关。对于每个年龄组的不同动物,进行了短期和长期试验的概率(0.25或0.75)。在测试期间,两个料斗都被照亮,因此没有区分主动试验类型。我们希望小鼠自发地结合独立获取的时间间隔位置概率信息,以在测试试验中自适应地指导其计时行为。分析并比较了各年龄组之间的适应能力和由此产生的计时行为。实际上,无论幼小老鼠还是老年老鼠,都基于独立获取的时空概率信息,以突然的方式调整了它们的计时行为。老老鼠的核心计时能力也完好无损。但是,当短期试验的可能性较高时,老年小鼠很难终止正在进行的定时反应,而在短期试验的可能性较低的组中,这种差异消失了。这些结果表明,通过定时决策中的阈值调制过程可以反映出老年小鼠的抑制问题,这是概率信息的认知渗透。

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