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An Experience of Using a Handwriting Haptic Device to Fine-Tune the Children Motor Skills

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Artificial Intelligence and Online Engineering (REV 2022)

Part of the book series: Lecture Notes in Networks and Systems ((LNNS,volume 524))

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Abstract

Handwriting can help children to improve their learning of a language and fine-tune their motor skills. Every child needs to develop her/his handwriting skill to grasp new concepts appropriately and learn the language vocabulary. Therefore, in-hand manipulation of the traditional pen is highly important to develop pre-writing and transform the scribbled writings to legible ones at a later stage. In this paper, we evaluate the effectiveness of a customized haptic device in improving the children motor skills and their handwriting quality of Arabic letters. We use the Touch™ device from the 3D-Systems company with a controllable stylus that can be adapted to children needs. Fifteen pupils from the Deutsch International School in Doha, have participated in this experience after obtaining all necessary ethical approvals from concerned stakeholders. We conducted the experiments for a period of two weeks with the assistance of the school instructors and staff. Results show that there is an important increase of children motivation, and a good improvement of their motor skills and handwriting experience. The device can be used at home to learn independently during COVID-19 pandemic that continues to hit severely the whole world and enforces schools to adapt online teaching approach.

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References

  1. Wu Z, et al (2021) LightWrite: teach handwriting to the visually impaired with a smartphone. In: Proceedings of the 2021 CHI conference on human factors in computing systems, pp 1–15

    Google Scholar 

  2. Pilatásig M, Tobar E, Paredes L, Sánches Z, Naranjo G (2021) Virtual reality and haptic devices applied in the system of teaching learning with children of early education age. In: Botto-Tobar M, Montes León S, Camacho O, Chávez D, Torres-Carrión P, Zambrano Vizuete M (eds) ICAT 2020, vol 1388. CCIS. Springer, Cham, pp 33–43. https://doi.org/10.1007/978-3-030-71503-8_3

    Chapter  Google Scholar 

  3. Kim Y, Collins M, Bulmer W, Sharma S, Mayrose J (2013) Haptics assisted training (HAT) system for children’s handwriting. In: World haptics conference (WHC), pp 559–564. https://doi.org/10.1109/WHC.2013.6548469

  4. Voutsakelis G, Kokkonis G, Kontogiannis S (2020) Haptic applications for people with limited motor skills. In: The 3rd world symposium on communication engineering (WSCE), pp 1–6. IEEE

    Google Scholar 

  5. Zhao H, Zheng Z, Swanson A, Weitlauf A, Warren Z, Sarkar N (2018) Design of a Haptic-Gripper virtual reality system (Hg) for analyzing fine motor behaviors in children with autism. ACM Trans Access Comput 11:4

    Article  Google Scholar 

  6. Bowers L, Ryan H (2021) Creative haptics: an evaluation of a haptic tool for non-sighted and visually impaired design students, studying at a distance. Br J Vis Impair 39(3):214–230

    Google Scholar 

  7. Ozgur Arzu G, et al (2020) Iterative design and evaluation of a tangible robot-assisted handwriting activity for special education. Front Robot AI 7:29. https://doi.org/10.3389/frobt.2020.00029

  8. Williams CK, Tremblay L, Carnahan H (2016) It pays to go off-track: practicing with error-augmenting haptic feedback facilitates learning of a curve-tracing task. Front Psychol 7:2010. https://doi.org/10.3389/fpsyg.2016.02010

  9. Kim Y-S, et al (2013) Haptics assisted training (HAT) system for children’s handwriting. In: Proceedings of the world haptics conference (WHC 2013), pp 559–564. IEEE, Daejeon

    Google Scholar 

  10. Zhao H, Zheng Z, Swanson A, Weitlauf A, Warren Z, Sarkar N (2018) Design of a Haptic-Gripper virtual reality system (Hg) for analyzing fine motor behaviors in children with autism. ACM Trans Access Comput 11(4):1–21

    Article  Google Scholar 

  11. Herodotou C (2018) Young children and tablets: a systematic review of effects on learning and development. J Comput Assist Learn 34(1):1–9

    Article  Google Scholar 

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Acknowledgement

This work was made possible by NPRP grant #10-0205-170346 from the Qatar National Research Fund (a member of Qatar Foundation). The statements made herein are solely the responsibility of the authors.

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Correspondence to Samir Abou El-Seoud .

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Zakraoui, J., Al Maadeed, S., Abou El-Seoud, S., Saleh, M., Al Ja’am, J. (2023). An Experience of Using a Handwriting Haptic Device to Fine-Tune the Children Motor Skills. In: Auer, M.E., El-Seoud, S.A., Karam, O.H. (eds) Artificial Intelligence and Online Engineering. REV 2022. Lecture Notes in Networks and Systems, vol 524. Springer, Cham. https://doi.org/10.1007/978-3-031-17091-1_54

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