Levy Sharon, Goldfarb Liat
Edmond J. Safra Brain Research Center for the Study of Learning Disabilities, University of Haifa, IL.
J Cogn. 2022 May 27;5(1):33. doi: 10.5334/joc.226. eCollection 2022.
Mathematical learning difficulties (MLD) are characterized by difficulties in the understanding and processing of numbers and quantities. While MLD is related mainly to numerical deficits, studies show that this population has several other cognitive difficulties. The current study examined whether the cognitive deficits consisting of cognitive instability in the form of intra-subject variability (ISV) will also characterize the performance of individuals with MLD.
Female adults with MLD and a matched control group performed numerical and non-numerical tasks and various ISV measures were compared between the two groups.
Overall, the results showed that participants with MLD had higher ISV measures, including SD, sigma, and tau, only when performing numerical tasks.
It appears that the cognitive system of MLD participants is less consistent and noisier when performing these numerical tasks. However, this inconsistency is not a general deficiency but rather a numerically specific one, as this inconsistency does not seem to characterize the performance of individuals with MLD in tasks that do not involve numerical processing. These findings have unique importance for understanding the difficulties characterizing individuals with MLD and possible future interventions.
数学学习困难(MLD)的特征在于在理解和处理数字及数量方面存在困难。虽然MLD主要与数字缺陷有关,但研究表明,这一群体还存在其他一些认知困难。本研究考察了以个体内变异性(ISV)形式存在的认知不稳定性所构成的认知缺陷是否也会成为MLD个体表现的特征。
患有MLD的成年女性和一个匹配的对照组执行数字和非数字任务,并比较两组之间的各种ISV测量值。
总体而言,结果表明,只有在执行数字任务时,患有MLD的参与者的ISV测量值(包括标准差、西格玛和陶)更高。
看来,MLD参与者的认知系统在执行这些数字任务时不太一致且更嘈杂。然而,这种不一致并非普遍缺陷,而是数字特有的,因为这种不一致似乎并非MLD个体在不涉及数字处理的任务中的表现特征。这些发现对于理解MLD个体的困难特征以及未来可能的干预措施具有独特的重要性。