Motor Development and Learning
elahe siavashi; ayoub hashemi; abouzar saadatian
Abstract
Introduction: The aim of the present study was to investigate the effect of different cognitive conditions in dyad trainings on the improvement and stability of executive functions (working memory, response inhibition) of table tennis players. Methods: In a semi-experimental study with a pre-test-post-test ...
Read More
Introduction: The aim of the present study was to investigate the effect of different cognitive conditions in dyad trainings on the improvement and stability of executive functions (working memory, response inhibition) of table tennis players. Methods: In a semi-experimental study with a pre-test-post-test and retention design, 24 boys (mean age 15.03±0.076) were selected through convenience sampling from boys' schools in yasouj city and randomly assigned to two groups: high cognitive load and low cognitive load. Both groups performed dyad trainings for 6 sessions with their respective cognitive engagement levels. Each session consisted of 20 repetitions (3 minutes) with a 1-minute rest period between repetitions. The participants' working memory and response inhibition were measured by the n-back and go/no go tests in the pre-test, post-test, and retention stages, respectively. Data were analyzed using a mixed model analysis of variance (ANOVA) test.Results: The results showed that both high and low cognitive load groups had a significant effect from pre-test to retention on working memory (P<0.05), and the high cognitive load group performed better than the low cognitive load group. Neither group showed a significant effect on response inhibition (P > 0.05).Conclusion: In general, the results of the present study indicate that dyad trainings with high cognitive load provide the possibility of improving the working memory of table tennis players.
Motor Development and Learning
heidar hanoon; ali heyrani; ehsan amiri
Abstract
Introduction: This research investigates the effects of transcranial direct current stimulation, in one or more sessions, on the executive functions of novice tennis players.
Methods: 27 novice male tennis players (mean age 20.29 ± 0.29) were randomly and double-blindly divided into three groups: experimental ...
Read More
Introduction: This research investigates the effects of transcranial direct current stimulation, in one or more sessions, on the executive functions of novice tennis players.
Methods: 27 novice male tennis players (mean age 20.29 ± 0.29) were randomly and double-blindly divided into three groups: experimental group 1 (5 sessions of anodal stimulation), experimental group 2 (1 session of anodal stimulation), and control group (no anodal stimulation). Stimulation was applied for 20 minutes at an intensity of 2 mA in the M1 and DLPFC regions. Indicators of selective attention, working memory, response inhibition and cognitive flexibility were measured before (pre-test), after 5 sessions (post-test) and 2 weeks after the intervention (retention). For statistical analysis, a repeated measures ANOVA test (3x3 factorial design) was used.
Results: The results showed that there was no significant difference between the intervention groups in the indicators of selective attention and working memory in any of the evaluation stages (P> 0.05). However, experimental group 1 showed a more significant improvement in response inhibition (p= 0.018) and cognitive flexibility (p= 0.14) indices in the retention test compared to the control group, while no significant difference was observed between the other groups (P> 0.05). Both experimental groups showed significant improvement in all indicators in the post-test and retention. Notably, experimental group 1 showed a significant improvement in all indicators from post-test to retention (P<0.05).
Conclusion: In conclusion, both single-session and multi-session tDCS enhance executive functions in novice tennis players, with repeated stimulation yielding more durable cognitive benefits.