TY - JOUR A1 - Kucian, Karin A1 - Zuber, Isabelle A1 - Kohn, Juliane A1 - Poltz, Nadine A1 - Wyschkon, Anne A1 - Esser, Günter A1 - von Aster, Michael G. T1 - Relation Between Mathematical Performance, Math Anxiety, and Affective Priming in Children With and Without Developmental Dyscalculia JF - Frontiers in psychology N2 - Many children show negative emotions related to mathematics and some even develop mathematics anxiety. The present study focused on the relation between negative emotions and arithmetical performance in children with and without developmental dyscalculia (DD) using an affective priming task. Previous findings suggested that arithmetic performance is influenced if an affective prime precedes the presentation of an arithmetic problem. In children with DD specifically, responses to arithmetic operations are supposed to be facilitated by both negative and mathematics-related primes (= negative math priming effect). We investigated mathematical performance, math anxiety, and the domain-general abilities of 172 primary school children (76 with DD and 96 controls). All participants also underwent an affective priming task which consisted of the decision whether a simple arithmetic operation (addition or subtraction) that was preceded by a prime (positive/negative/neutral or mathematics-related) was true or false. Our findings did not reveal a negative math priming effect in children with DD. Furthermore, when considering accuracy levels, gender, or math anxiety, the negative math priming effect could not be replicated. However, children with DD showed more math anxiety when explicitly assessed by a specific math anxiety interview and showed lower mathematical performance compared to controls. Moreover, math anxiety was equally present in boys and girls, even in the earliest stages of schooling, and interfered negatively with performance. In conclusion, mathematics is often associated with negative emotions that can be manifested in specific math anxiety, particularly in children with DD. Importantly, present findings suggest that in the assessed age group, it is more reliable to judge math anxiety and investigate its effects on mathematical performance explicitly by adequate questionnaires than by an affective math priming task. KW - developmental dyscalculia KW - mathematics KW - affective priming KW - calculation KW - arithmetic KW - anxiety KW - gender KW - children Y1 - 2018 U6 - https://doi.org/10.3389/fpsyg.2018.00263 SN - 1664-1078 VL - 9 PB - Frontiers Research Foundation CY - Lausanne ER - TY - JOUR A1 - Ehlert, Antje A1 - Poltz, Nadine A1 - Quandte, Sabine A1 - Kohn-Henkel, Juliane A1 - Kucian, Karin A1 - Aster, Michael von A1 - Esser, Günter T1 - Taking a closer look: The relationship between pre-school domain general cognition and school mathematics achievement when controlling for intelligence JF - Journal of Intelligence N2 - Intelligence, as well as working memory and attention, affect the acquisition of mathematical competencies. This paper aimed to examine the influence of working memory and attention when taking different mathematical skills into account as a function of children’s intellectual ability. Overall, intelligence, working memory, attention and numerical skills were assessed twice in 1868 German pre-school children (t1, t2) and again at 2nd grade (t3). We defined three intellectual ability groups based on the results of intellectual assessment at t1 and t2. Group comparisons revealed significant differences between the three intellectual ability groups. Over time, children with low intellectual ability showed the lowest achievement in domain-general and numerical and mathematical skills compared to children of average intellectual ability. The highest achievement on the aforementioned variables was found for children of high intellectual ability. Additionally, path modelling revealed that, depending on the intellectual ability, different models of varying complexity could be generated. These models differed with regard to the relevance of the predictors (t2) and the future mathematical skills (t3). Causes and conclusions of these findings are discussed. KW - intellectual ability KW - intelligence KW - pre-school KW - mathematical development KW - school mathematics KW - longitudinal KW - numerical skills KW - working memory KW - attention Y1 - 2022 U6 - https://doi.org/10.3390/jintelligence10030070 SN - 2079-3200 VL - 10 SP - 1 EP - 23 PB - MDPI CY - Basel, Schweiz ET - 3 ER - TY - JOUR A1 - Kohn, Juliane A1 - Rauscher, Larissa A1 - Kucian, Karin A1 - Käser, Tanja A1 - Wyschkon, Anne A1 - Esser, Günter A1 - von Aster, Michael G. T1 - Efficacy of a Computer-Based Learning Program in Children With Developmental Dyscalculia BT - What Influences Individual Responsiveness? JF - Frontiers in Psychology N2 - This study presents the evaluation of a computer-based learning program for children with developmental dyscalculia and focuses on factors affecting individual responsiveness. The adaptive training program Calcularis 2.0 has been developed according to current neuro-cognitive theory of numerical cognition. It aims to automatize number representations, supports the formation and access to the mental number line and trains arithmetic operations as well as arithmetic fact knowledge in expanding number ranges. Sixty-seven children with developmental dyscalculia from second to fifth grade (mean age 8.96 years) were randomly assigned to one of two groups (Calcularis group, waiting control group). Training duration comprised a minimum of 42 training sessions à 20 min within a maximum period of 13 weeks. Compared to the waiting control group, children of the Calcularis group demonstrated a higher benefit in arithmetic operations and number line estimation. These improvements were shown to be stable after a 3-months post training interval. In addition, this study examines which predictors accounted for training improvements. Results indicate that this self-directed training was especially beneficial for children with low math anxiety scores and without an additional reading and/or spelling disorder. In conclusion, Calcularis 2.0 supports children with developmental dyscalculia to improve their arithmetical abilities and their mental number line representation. However, it is relevant to further adapt the setting to the individual circumstances. KW - developmental dyscalculia KW - mathematics instruction KW - computer-based training KW - intelligent tutoring system (ITS) KW - numerical development KW - evaluative study KW - primary school Y1 - 2019 U6 - https://doi.org/10.3389/fpsyg.2020.01115 SN - 1664-1078 VL - 11 PB - Frontiers Research Foundation CY - Lausanne ER - TY - JOUR A1 - Poltz, Nadine A1 - Quandte, Sabine A1 - Kohn, Juliane A1 - Kucian, Karin A1 - Wyschkon, Anne A1 - von Aster, Michael A1 - Esser, Günter T1 - Does It Count? Pre-School Children’s Spontaneous Focusing on Numerosity and Their Development of Arithmetical Skills at School JF - Brain Sciences N2 - Background: Children’s spontaneous focusing on numerosity (SFON) is related to numerical skills. This study aimed to examine (1) the developmental trajectory of SFON and (2) the interrelations between SFON and early numerical skills at pre-school as well as their influence on arithmetical skills at school. Method: Overall, 1868 German pre-school children were repeatedly assessed until second grade. Nonverbal intelligence, visual attention, visuospatial working memory, SFON and numerical skills were assessed at age five (M = 63 months, Time 1) and age six (M = 72 months, Time 2), and arithmetic was assessed at second grade (M = 95 months, Time 3). Results: SFON increased significantly during pre-school. Path analyses revealed interrelations between SFON and several numerical skills, except number knowledge. Magnitude estimation and basic calculation skills (Time 1 and Time 2), and to a small degree number knowledge (Time 2), contributed directly to arithmetic in second grade. The connection between SFON and arithmetic was fully mediated by magnitude estimation and calculation skills at pre-school. Conclusion: Our results indicate that SFON first and foremost influences deeper understanding of numerical concepts at pre-school and—in contrast to previous findings –affects only indirectly children’s arithmetical development at school. KW - SFON KW - school mathematics KW - mathematical precursor KW - counting KW - number knowledge KW - magnitude estimation KW - transformation KW - pre-school KW - longitudinal KW - development Y1 - 2022 U6 - https://doi.org/10.3390/brainsci12030313 SN - 2076-3425 VL - 12 SP - 1 EP - 18 PB - MDPI CY - Basel, Schweiz ET - 3 ER -