Literature DB >> 25370201

Systematic review and proposal of a field-based physical fitness-test battery in preschool children: the PREFIT battery.

Francisco B Ortega1, Cristina Cadenas-Sánchez, Guillermo Sánchez-Delgado, José Mora-González, Borja Martínez-Téllez, Enrique G Artero, Jose Castro-Piñero, Idoia Labayen, Palma Chillón, Marie Löf, Jonatan R Ruiz.   

Abstract

BACKGROUND: Physical fitness is a powerful health marker in childhood and adolescence, and it is reasonable to think that it might be just as important in younger children, i.e. preschoolers. At the moment, researchers, clinicians and sport practitioners do not have enough information about which fitness tests are more reliable, valid and informative from the health point of view to be implemented in preschool children.
OBJECTIVE: Our aim was to systematically review the studies conducted in preschool children using field-based fitness tests, and examine their (1) reliability, (2) validity, and (3) relationship with health outcomes. Our ultimate goal was to propose a field-based physical fitness-test battery to be used in preschool children. DATA SOURCES: PubMed and Web of Science. STUDY ELIGIBILITY CRITERIA: Studies conducted in healthy preschool children that included field-based fitness tests. STUDY APPRAISAL AND SYNTHESIS
METHODS: When using PubMed, we included Medical Subject Heading (MeSH) terms to enhance the power of the search. A set of fitness-related terms were combined with 'child, preschool' [MeSH]. The same strategy and terms were used for Web of Science (except for the MeSH option). Since no previous reviews with a similar aim were identified, we searched for all articles published up to 1 April 2014 (no starting date). A total of 2,109 articles were identified, of which 22 articles were finally selected for this review.
RESULTS: Most studies focused on reliability of the fitness tests (n = 21, 96%), while very few focused on validity (0 criterion-related validity and 4 (18%) convergent validity) or relationship with health outcomes (0 longitudinal and 1 (5%) cross-sectional study). Motor fitness, particularly balance, was the most studied fitness component, while cardiorespiratory fitness was the least studied. After analyzing the information retrieved in the current systematic review about fitness testing in preschool children, we propose the PREFIT battery, field-based FITness testing in PREschool children. The PREFIT battery is composed of the following tests: the 20 m shuttle-run test for assessing cardiorespiratory fitness, the handgrip-strength and the standing long-jump tests for assessing musculoskeletal fitness, and the 4 × 10 m shuttle run and the one-leg-stance tests for assessing motor fitness, i.e. speed/agility and balance, respectively. The rationale for the selection of each of the tests included in the PREFIT battery is provided in this review, as well as directions for future research. LIMITATIONS: Levels of evidence based on quality assessment of selected studies could not be constructed due to the limited number of studies identified for each test.
CONCLUSIONS: The present systematic review has identified a need for further research on the validity of fitness tests in preschool children, as well as on their relationship with health. Due to this limited information, the PREFIT battery hereby proposed is based on the output of the current systematic review in preschool children, together with existing evidence in older children and adolescents. While we wait for more evidence to be accumulated in preschool children, the PREFIT battery hereby proposed is a useful tool for assessing physical fitness in children aged 3-5 years.

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Mesh:

Year:  2015        PMID: 25370201     DOI: 10.1007/s40279-014-0281-8

Source DB:  PubMed          Journal:  Sports Med        ISSN: 0112-1642            Impact factor:   11.136


  67 in total

1.  Reliability of fitness measures in 3- to 5-year-old children.

Authors:  Thanh Nguyen; Joyce Obeid; Brian W Timmons
Journal:  Pediatr Exerc Sci       Date:  2011-05       Impact factor: 2.333

2.  Reliability and validity of a qualitative and quantitative motor test for 5- to 6-year-old children.

Authors:  Mariëlle Kroes; Yvonne L J Vissers; Frans A M Sleijpen; Frans J M Feron; Alfons G H Kessels; Esther Bakker; Ariane C Kalff; Jos G M Hendriksen; Jaap Troost; Jelle Jolles; Johan S H Vles
Journal:  Eur J Paediatr Neurol       Date:  2004       Impact factor: 3.140

3.  Relationships among age, sex, and lateral dominance for 3- to 6-year-old children performing unilateral stance.

Authors:  K A Greenspan
Journal:  Percept Mot Skills       Date:  1990-10

4.  Review of the Bruininks-Oseretsky Test of Motor Proficiency, Second Edition (BOT-2).

Authors:  Jean C Deitz; Deborah Kartin; Kay Kopp
Journal:  Phys Occup Ther Pediatr       Date:  2007       Impact factor: 2.360

Review 5.  Predictive validity of health-related fitness in youth: a systematic review.

Authors:  J R Ruiz; J Castro-Piñero; E G Artero; F B Ortega; M Sjöström; J Suni; M J Castillo
Journal:  Br J Sports Med       Date:  2009-01-21       Impact factor: 13.800

6.  Motor assessment using the NIH Toolbox.

Authors:  David B Reuben; Susan Magasi; Heather E McCreath; Richard W Bohannon; Ying-Chih Wang; Deborah J Bubela; William Z Rymer; Jennifer Beaumont; Rose Marie Rine; Jin-Shei Lai; Richard C Gershon
Journal:  Neurology       Date:  2013-03-12       Impact factor: 9.910

7.  Early nutritional history and motor performance of Senegalese children, 4-6 years of age.

Authors:  E Bénéfice; T Fouére; R M Malina
Journal:  Ann Hum Biol       Date:  1999 Sep-Oct       Impact factor: 1.533

8.  Anthropometric influence on physical fitness among preschool children: gender-specific linear and curvilinear regression models.

Authors:  Miran Kondric; Biljana Trajkovski; Maja Strbad; Nikola Foretić; Natasa Zenić
Journal:  Coll Antropol       Date:  2013-12

9.  Assessing muscular strength in youth: usefulness of standing long jump as a general index of muscular fitness.

Authors:  José Castro-Piñero; Francisco B Ortega; Enrique G Artero; Maria J Girela-Rejón; Jesús Mora; Michael Sjöström; Jonatan R Ruiz
Journal:  J Strength Cond Res       Date:  2010-07       Impact factor: 3.775

10.  Reliability and validity of age band 1 of the Movement Assessment Battery for Children--second edition.

Authors:  Theodoros Ellinoudis; Christina Evaggelinou; Thomas Kourtessis; Zoe Konstantinidou; Fotini Venetsanou; Antonis Kambas
Journal:  Res Dev Disabil       Date:  2011-02-17
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  49 in total

1.  Does anthropometric and fitness parameters mediate the effect of exercise on the HRQoL of overweight and obese children/adolescents?

Authors:  Miguel A Perez-Sousa; Pedro R Olivares; Antonio Garcia-Hermoso; Narcis Gusi
Journal:  Qual Life Res       Date:  2018-06-08       Impact factor: 4.147

2.  Physical activity intensity, sedentary behavior, body composition and physical fitness in 4-year-old children: results from the ministop trial.

Authors:  M H Leppänen; C Delisle Nyström; P Henriksson; J Pomeroy; J R Ruiz; F B Ortega; C Cadenas-Sánchez; M Löf
Journal:  Int J Obes (Lond)       Date:  2016-04-18       Impact factor: 5.095

3.  Estimating VO2max in children aged 5-6 years through the preschool-adapted 20-m shuttle-run test (PREFIT).

Authors:  Jose Mora-Gonzalez; Cristina Cadenas-Sanchez; Borja Martinez-Tellez; Guillermo Sanchez-Delgado; Jonatan R Ruiz; Luc Léger; Francisco B Ortega
Journal:  Eur J Appl Physiol       Date:  2017-09-20       Impact factor: 3.078

4.  Increasing Children's physical Activity by Policy (CAP) in preschools within the Stockholm region: study protocol for a pragmatic cluster-randomized controlled trial.

Authors:  C Chen; V H Ahlqvist; P Henriksson; J H Migueles; F Christiansen; M R Galanti; D Berglind
Journal:  Trials       Date:  2022-07-19       Impact factor: 2.728

5.  Exploring Correlates of Preschool-Aged Children's Locomotor Skills: Individual and Parent Demographics and Home Environment.

Authors:  Jacob Szeszulski; Elizabeth Lorenzo; Teresia O'Connor; Jennie L Hill; Gabriel Q Shaibi; Matthew P Buman; Sonia Vega-López; Steven P Hooker; Rebecca E Lee
Journal:  Percept Mot Skills       Date:  2020-12-20

6.  Association Between Physical Fitness and Bone Strength and Structure in 3- to 5-Year-Old Children.

Authors:  Alejandro Gómez-Bruton; Jorge Marín-Puyalto; Borja Muñiz-Pardos; Gabriel Lozano-Berges; Cristina Cadenas-Sanchez; Angel Matute-Llorente; Alba Gómez-Cabello; Luis A Moreno; Alex Gonzalez-Agüero; Jose A Casajus; Germán Vicente-Rodríguez
Journal:  Sports Health       Date:  2020-05-22       Impact factor: 3.843

7.  Reliability of Field-Based Fitness Tests in Adults: A Systematic Review.

Authors:  Magdalena Cuenca-Garcia; Nuria Marin-Jimenez; Alejandro Perez-Bey; David Sánchez-Oliva; Daniel Camiletti-Moiron; Inmaculada C Alvarez-Gallardo; Francisco B Ortega; Jose Castro-Piñero
Journal:  Sports Med       Date:  2022-01-22       Impact factor: 11.928

8.  A web- and mobile phone-based intervention to prevent obesity in 4-year-olds (MINISTOP): a population-based randomized controlled trial.

Authors:  Christine Delisle; Sven Sandin; Elisabet Forsum; Hanna Henriksson; Ylva Trolle-Lagerros; Christel Larsson; Ralph Maddison; Francisco B Ortega; Jonatan R Ruiz; Kristin Silfvernagel; Toomas Timpka; Marie Löf
Journal:  BMC Public Health       Date:  2015-02-07       Impact factor: 3.295

9.  Associations of Fat Mass and Fat-Free Mass with Physical Fitness in 4-Year-Old Children: Results from the MINISTOP Trial.

Authors:  Pontus Henriksson; Cristina Cadenas-Sanchez; Marja H Leppänen; Christine Delisle Nyström; Francisco B Ortega; Jeremy Pomeroy; Jonatan R Ruiz; Marie Löf
Journal:  Nutrients       Date:  2016-07-30       Impact factor: 5.717

10.  Healthier Minds in Fitter Bodies: A Systematic Review and Meta-Analysis of the Association between Physical Fitness and Mental Health in Youth.

Authors:  Cristina Cadenas-Sanchez; Alejandra Mena-Molina; Lucia V Torres-Lopez; Jairo H Migueles; María Rodriguez-Ayllon; David R Lubans; Francisco B Ortega
Journal:  Sports Med       Date:  2021-07-27       Impact factor: 11.136

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