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Dissociation between numerosity and duration processing in aging and early Parkinson's disease

机译:衰老和早期帕金森氏病的数量和持续时间处理之间的分离

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Numerosity and duration processing have been shown to be underlain by a single representational mechanism, namely an accumulator, and to rely on a common cerebral network located principally in areas around the right intraparietal sulcus. However, recent neuropsychological findings reveal a dissociation between numerosity and duration processing, which suggests the existence of partially distinct mechanisms. In this study, we tested the idea of partially common and distinct mechanisms by investigating, for the first time, both numerical and temporal processing abilities in non-demented Parkinson's disease (PD) patients known to suffer from duration impairment and in healthy elderly adults known to have impaired performance in duration tasks. The aim was to assess whether this impaired duration processing would extend to numerosity processing. The participants had to compare either the numerosity of flashed dot sequences or the duration of single dot displays. The results demonstrate an effect of aging on duration comparison, healthy elderly participants making significantly more errors than healthy young participants. Importantly, the performance of PD patients on the duration task was worse than that of the healthy young and elderly groups, whereas no difference was found for numerosity comparison. This dissociation supports the idea that partly independent systems underlie the processing of numerosity and duration.
机译:已经证明,净度和持续时间处理受单一代表机制(即累加器)的影响,并且依赖主要位于右顶壁沟周围区域的常见大脑网络。然而,最近的神经心理学发现揭示了数字和持续时间处理之间的分离,这表明存在部分不同的机制。在这项研究中,我们通过首次调查已知患有持续时间受损的非痴呆性帕金森氏病(PD)患者和已知的健康老年人的数字和时间处理能力,测试了部分共有和不同机制的概念在持续性任务中表现受损。目的是评估持续时间受损的处理是否会扩展到数字处理。参与者必须比较闪烁点序列的数量或单个点显示的持续时间。结果证明了衰老对持续时间比较的影响,健康的老年参与者比健康的青年参与者犯了更多的错误。重要的是,PD患者在持续时间任务上的表现比健康的青年和老年人组要差,而在数字比较上没有发现差异。这种分离支持以下观点:部分独立的系统是数字处理和持续时间处理的基础。

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