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心算以依赖节拍的方式调节手指敲击任务的时变可变性。

Mental arithmetic modulates temporal variabilities of finger-tapping tasks in a tempo-dependent manner.

机构信息

Division for Smart Healthcare Research, Dokkyo Medical University, Mibu-machi, Tochigi, Japan.

Major of Physical Therapy, Department of Rehabilitation, School of Health Sciences, Tokyo University of Technology, Ota-ku, Tokyo, Japan.

出版信息

PeerJ. 2022 Aug 25;10:e13944. doi: 10.7717/peerj.13944. eCollection 2022.

Abstract

BACKGROUND

Several psychiatric diseases impair temporal processing. Temporal processing is thought to be based on two domains: supra-second intervals and sub-second intervals. Studies show that temporal processing in sub-second intervals is mainly an automated process. However, the brain functions involved in temporal processing at each time scale remain unclear. We hypothesized that temporal processing in supra-second intervals requires several brain areas, such as the ventrolateral prefrontal cortex, intraparietal sulcus (IPS), and inferior parietal lobe, corresponding to various cognitions in a time scale-dependent manner. We focused on a dual-task paradigm (DTP) involving simultaneous performance of cognitive and motor tasks, which is an effective method for screening psychomotor functions; we then designed a DTP comprising finger tapping at various tempi as the temporal processing task and two cognitive tasks (mental arithmetic and reading) that might affect temporal processing. We hoped to determine whether task-dependent interferences on temporal processing in supra-second intervals differed depending on the cognitive tasks involved.

METHODS

The study included 30 participants with no history of neuromuscular disorders. Participants were asked to perform a DTP involving right index finger tapping at varying tempi (0.33, 0.5, 1, 2, 3, and 4 s inter-tapping intervals). Cognitive tasks comprised mental arithmetic (MA) involving three-digit addition, mental reading (MR) of three- to four-digit numbers, and a control (CTL) task without any cognitive loading. For comparison between tasks, we calculated the SDs of the inter-tapping intervals. Participants' MA abilities in the three-digit addition task were evaluated.

RESULTS

The MA and MR tasks significantly increased the SDs of the inter-tapping intervals compared to those of the CTL task in 2-3 s and 3-4 s for the MA and MR tasks, respectively. Furthermore, SD peaks in the finger-tapping tasks involving MA were normalized by those in the CTL task, which were moderately correlated with the participants' MA ability ( = 0.462, = 0.010).

DISCUSSION

Our results established that DTP involving the temporal coordination of finger-tapping and cognitive tasks increased temporal variability in a task- and tempo-dependent manner. Based on the behavioral aspects, we believe that these modulations of temporal variability might result from the interaction between finger function, arithmetic processing, and temporal processing, especially during the "pre-semantic period". Our findings may help in understanding the temporal processing deficits in various disorders such as dementia, Parkinson's disease, and autism.

摘要

背景

几种精神疾病会损害时间处理能力。时间处理被认为基于两个领域:超秒间隔和亚秒间隔。研究表明,亚秒间隔的时间处理主要是一个自动过程。然而,在每个时间尺度上涉及的大脑功能仍不清楚。我们假设超秒间隔的时间处理需要几个大脑区域,例如腹外侧前额叶皮层、顶内沟(IPS)和下顶叶,以时间依赖的方式对应于各种认知。我们专注于涉及同时执行认知和运动任务的双任务范式(DTP),这是一种筛选精神运动功能的有效方法;然后,我们设计了一个 DTP,包括以各种节奏进行手指敲击作为时间处理任务,以及两个可能影响时间处理的认知任务(心算和阅读)。我们希望确定超秒间隔时间处理的任务相关干扰是否取决于所涉及的认知任务。

方法

该研究包括 30 名无神经肌肉障碍病史的参与者。要求参与者执行涉及右食指以不同节奏敲击的 DTP(0.33、0.5、1、2、3 和 4 秒的敲击间隔)。认知任务包括三位数字加法的心算(MA)、三到四位数字的默读(MR)和没有认知负荷的对照(CTL)任务。为了比较任务之间的差异,我们计算了敲击间隔的标准差。参与者在三位数字加法任务中的 MA 能力进行了评估。

结果

MA 和 MR 任务与 CTL 任务相比,分别在 2-3 秒和 3-4 秒时,显著增加了敲击间隔的 SD。此外,MA 任务中的手指敲击任务的 SD 峰值通过 CTL 任务归一化,这与参与者的 MA 能力中度相关(=0.462,=0.010)。

讨论

我们的结果表明,涉及手指敲击和认知任务时间协调的 DTP 以任务和节奏依赖的方式增加了时间变异性。基于行为方面,我们认为这些时间变异性的调节可能是手指功能、算术处理和时间处理之间相互作用的结果,特别是在“前语义期”。我们的发现可能有助于理解痴呆、帕金森病和自闭症等各种疾病的时间处理缺陷。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9a33/9420403/d6820bbe461d/peerj-10-13944-g001.jpg

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