Design and evaluation of the computer-based training program Calcularis for enhancing numerical cognition

Tanja Käser, Gian-Marco Baschera, Juliane Kohn, Karin Kucian, Verena Richtmann, Ursina Grond, Michael von Aster

Frontiers in Psychology · 2013 · 104 citations · 49 references

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TL;DR

This study designs and pilot‑evaluates Calcularis, a computer‑based training program for children with developmental dyscalculia or math learning difficulties. Calcularis was built on developmental insights, uses multimodal cues and a user model for adaptive learning, and was administered to 32 children for 6–12 weeks (20 min/day, 5 days/week) with outcomes measured by neuropsychological tests. The pilot showed significant gains in number representation and arithmetic operations, and children reported enjoying the program and perceiving improved mathematical abilities.

Abstract

This article presents the design and a first pilot evaluation of the computer-based training program Calcularis for children with developmental dyscalculia (DD) or difficulties in learning mathematics. The program has been designed according to insights on the typical and atypical development of mathematical abilities. The learning process is supported through multimodal cues, which encode different properties of numbers. To offer optimal learning conditions, a user model completes the program and allows flexible adaptation to a child's individual learning and knowledge profile. Thirty-two children with difficulties in learning mathematics completed the 6-12-weeks computer training. The children played the game for 20 min per day for 5 days a week. The training effects were evaluated using neuropsychological tests. Generally, children benefited significantly from the training regarding number representation and arithmetic operations. Furthermore, children liked to play with the program and reported that the training improved their mathematical abilities.

References

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