DOI: 10.1177/15500594261492489 ISSN: 1550-0594

Analysis of the P300 Component in Children Practicing Karate at Different Stages of Biological Maturation: An Investigation of Attention and Working Memory

Eduardo Nicoliche, Alexandre Vasconcelos, Marcos Machado, Guaraci Tanaka, Danielle Aprigio, Paulo Cardoso Junior, Renan Vicente, Adriana Marques, Thiago Vivacqua, Élida Costa, Mariana Gongora, Jessé Di Giacomo, Marcelo Nobre, Silmar Teixeira, Victor Hugo Bastos, Mauricio Cagy, Isabelle Fernandes, Pedro Ribeiro, Henning Budde, Bruna Velasques

Objectives

To investigate attention and working memory by comparing children who practice Karate with non-Karate practitioners at different stages of biological maturation through P300 amplitude and latency during a Go/No-Go paradigm.

Methods

The P300 component was analyzed at the Fz, Cz, and Pz electrodes in 80 participants divided into two groups: Karate practitioners and non-Karate practitioners. Each group was subdivided by Peak Height Velocity into two maturational levels.

Results

At Pz, a Group × Peak Height Velocity interaction was found for P300 amplitude (F = 45.85, p < 0.001). At Cz, a Group × Peak Height Velocity interaction was also observed for P300 amplitude (F = 10.41, p = 0.004). At Fz, main effects of Group and Peak Height Velocity were found for P300 amplitude (F = 40.33, p = 0.010; F = 36.73, p = 0.012, respectively) and latency (F = 7.71, p = 0.012; F = 38.37, p = 0.010, respectively). The Karate group showed different electrocortical patterns across electrodes and maturational stages, with lower P300 amplitude in several comparisons and latency effects modulated by biological maturation.

Conclusion

Contrary to the initial hypothesis of higher P300 amplitude in Karate practitioners, Karate practice and biological maturation appear to influence behavioral performance and P300 markers of target-related attentional processing in the opposite direction. The findings suggest altered efficiency in attentional processing and response evaluation rather than a uniform increase in P300 amplitude. Biological maturation should be controlled in future studies.