Modelling movement energetics using global positioning system devices in contact team sports : limitations and solutions

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Bibliographische Detailangaben
Deutscher übersetzter Titel:Modellierung der Bewegungsenergie mittels Geräten des Global Positioning Systems im Kontaktteamsport : Einschränkungen und Lösungen
Autor:Gray, Adrian J.; Shorter, Kathleen; Cummins, Cloe; Murphy, Aron; Waldron, Mark
Erschienen in:Sports medicine
Veröffentlicht:48 (2018), 6, S. 1357–1368, Lit.
Format: Literatur (SPOLIT)
Publikationstyp: Zeitschriftenartikel
Medienart: Elektronische Ressource (online) Gedruckte Ressource
Sprache:Englisch
ISSN:0112-1642, 1179-2035
DOI:10.1007/s40279-018-0899-z
Schlagworte:
GPS
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Erfassungsnummer:PU201809006495
Quelle:BISp

Abstract des Autors

Quantifying the training and competition loads of players in contact team sports can be performed in a variety of ways, including kinematic, perceptual, heart rate or biochemical monitoring methods. Whilst these approaches provide data relevant for team sports practitioners and athletes, their application to a contact team sport setting can sometimes be challenging or illogical. Furthermore, these methods can generate large fragmented datasets, do not provide a single global measure of training load and cannot adequately quantify all key elements of performance in contact team sports. A previous attempt to address these limitations via the estimation of metabolic energy demand (global energy measurement) has been criticised for its inability to fully quantify the energetic costs of team sports, particularly during collisions. This is despite the seemingly unintentional misapplication of the model’s principles to settings outside of its intended use. There are other hindrances to the application of such models, which are discussed herein, such as the data-handling procedures of Global Position System manufacturers and the unrealistic expectations of end users. Nevertheless, we propose an alternative energetic approach, based on Global Positioning System-derived data, to improve the assessment of mechanical load in contact team sports. We present a framework for the estimation of mechanical work performed during locomotor and contact events with the capacity to globally quantify the work done during training and matches.