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Coexistence of Distinct Performance Models in High-Level Women’s Volleyball

In performance analysis, and most notably in match analysis, generalizing game patterns in a sport or competition may result in formulating generic models and neglecting relevant variability in benefit of average or central values. Here, we aimed to understand how different game models can coexist a...

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Autores principales: Laporta, Lorenzo, Medeiros, Alexandre Igor Araripe, Vargas, Nicole, Castro, Henrique de Oliveira, Bessa, Cristiana, João, Paulo Vicente, Costa, Gustavo De Conti Teixeira, Afonso, José
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Sciendo 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8120966/
https://www.ncbi.nlm.nih.gov/pubmed/34025874
http://dx.doi.org/10.2478/hukin-2021-0048
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author Laporta, Lorenzo
Medeiros, Alexandre Igor Araripe
Vargas, Nicole
Castro, Henrique de Oliveira
Bessa, Cristiana
João, Paulo Vicente
Costa, Gustavo De Conti Teixeira
Afonso, José
author_facet Laporta, Lorenzo
Medeiros, Alexandre Igor Araripe
Vargas, Nicole
Castro, Henrique de Oliveira
Bessa, Cristiana
João, Paulo Vicente
Costa, Gustavo De Conti Teixeira
Afonso, José
author_sort Laporta, Lorenzo
collection PubMed
description In performance analysis, and most notably in match analysis, generalizing game patterns in a sport or competition may result in formulating generic models and neglecting relevant variability in benefit of average or central values. Here, we aimed to understand how different game models can coexist at the same competitive level using social network analysis with degree centrality to obtain systemic mappings for six volleyball matches, one for each of the six national teams playing in the 2014 World Grand Prix Finals, guaranteeing a homogeneous game level and balanced matches. Although the sample was not recent, this was not relevant for our purposes, since we aimed to merely expose a proof of concept. A total of 56 sets and 7,176 ball possessions were analysed through Gephi Software, considering game actions as nodes and the interaction between them as edges. Results supported the coexistence of different performance models at the highest levels of practice, with each of the six teams presenting a very distinct game model. For example, important differences in eigenvector centrality in attack zones (ranging from 0 to 34) and tempos (20 to 38) were found between the six teams, as well as in defensive lines (20 to 39) and block opposition (22 to 37). This further suggests that there may be multiple pathways towards expert performance within any given sport, inviting a re-conceptualization of monolithic talent identification, detection and selection models. Future studies could benefit from standardizing the metrics in function of the number of ball possessions.
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spelling pubmed-81209662021-05-20 Coexistence of Distinct Performance Models in High-Level Women’s Volleyball Laporta, Lorenzo Medeiros, Alexandre Igor Araripe Vargas, Nicole Castro, Henrique de Oliveira Bessa, Cristiana João, Paulo Vicente Costa, Gustavo De Conti Teixeira Afonso, José J Hum Kinet Section III – Sports Training In performance analysis, and most notably in match analysis, generalizing game patterns in a sport or competition may result in formulating generic models and neglecting relevant variability in benefit of average or central values. Here, we aimed to understand how different game models can coexist at the same competitive level using social network analysis with degree centrality to obtain systemic mappings for six volleyball matches, one for each of the six national teams playing in the 2014 World Grand Prix Finals, guaranteeing a homogeneous game level and balanced matches. Although the sample was not recent, this was not relevant for our purposes, since we aimed to merely expose a proof of concept. A total of 56 sets and 7,176 ball possessions were analysed through Gephi Software, considering game actions as nodes and the interaction between them as edges. Results supported the coexistence of different performance models at the highest levels of practice, with each of the six teams presenting a very distinct game model. For example, important differences in eigenvector centrality in attack zones (ranging from 0 to 34) and tempos (20 to 38) were found between the six teams, as well as in defensive lines (20 to 39) and block opposition (22 to 37). This further suggests that there may be multiple pathways towards expert performance within any given sport, inviting a re-conceptualization of monolithic talent identification, detection and selection models. Future studies could benefit from standardizing the metrics in function of the number of ball possessions. Sciendo 2021-03-31 /pmc/articles/PMC8120966/ /pubmed/34025874 http://dx.doi.org/10.2478/hukin-2021-0048 Text en © 2021 Lorenzo Laporta, Alexandre Igor Araripe Medeiros, Nicole Vargas, Henrique de Oliveira Castro, Cristiana Bessa, Paulo Vicente João, Gustavo De Conti Teixeira Costa, José Afonso, published by Sciendo https://creativecommons.org/licenses/by-nc-nd/3.0/This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.
spellingShingle Section III – Sports Training
Laporta, Lorenzo
Medeiros, Alexandre Igor Araripe
Vargas, Nicole
Castro, Henrique de Oliveira
Bessa, Cristiana
João, Paulo Vicente
Costa, Gustavo De Conti Teixeira
Afonso, José
Coexistence of Distinct Performance Models in High-Level Women’s Volleyball
title Coexistence of Distinct Performance Models in High-Level Women’s Volleyball
title_full Coexistence of Distinct Performance Models in High-Level Women’s Volleyball
title_fullStr Coexistence of Distinct Performance Models in High-Level Women’s Volleyball
title_full_unstemmed Coexistence of Distinct Performance Models in High-Level Women’s Volleyball
title_short Coexistence of Distinct Performance Models in High-Level Women’s Volleyball
title_sort coexistence of distinct performance models in high-level women’s volleyball
topic Section III – Sports Training
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8120966/
https://www.ncbi.nlm.nih.gov/pubmed/34025874
http://dx.doi.org/10.2478/hukin-2021-0048
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