Agreement and Associations between Countermovement Jump, 5-Time Sit-To-Stand, Lower-Limb Muscle Power Equations, and Physical Performance Tests in Community-Dwelling Older Adults

Author:

Coelho-Júnior Hélio José1ORCID,da Silva Aguiar Samuel23ORCID,de Oliveira Gonçalves Ivan4,Álvarez-Bustos Alejandro5ORCID,Rodríguez-Mañas Leocadio5ORCID,Uchida Marco Carlos6ORCID,Marzetti Emanuele17ORCID

Affiliation:

1. Department of Geriatrics, Orthopedics and Rheumatology, Center for Geriatric Medicine (Ce.M.I.), Università Cattolica del Sacro Cuore, Largo F. Vito 1, 00168 Rome, Italy

2. University Centre UDF, Faculty of Physical Education, 704/904 Seps Eq 702/902, Brasília 70390-045, Brazil

3. Graduate Program in Physical Education, Federal University of Mato Grosso, Av. Fernando Corrêa da Costa 2367 Bairro Boa Esperança, Cuiabá 78060-900, Brazil

4. Department of Health, Piaget University, Av. Mogi das Cruzes 1001, Suzano 08673-010, Brazil

5. Centro de Investigación Biomédica en Red Sobre Fragilidad y Envejecimiento Saludable (CIBERFES), Instituto de Salud Carlos III, Av. Monforte de Lemos 3-5, 28029 Madrid, Spain

6. Applied Kinesiology Laboratory, School of Physical Education, University of Campinas, Av. Érico Veríssimo 701, Campinas 13083-851, Brazil

7. Fondazione Policlinico Universitario “Agostino Gemelli” IRCCS, Largo A. Gemelli 8, 00168 Rome, Italy

Abstract

Objectives: The present study examined the agreement and associations of the 5-time sit-to-stand (5STS) test, the countermovement jump test, and lower-limb muscle power equations with a set of physical performance tests in older adults. Methods: Five hundred and thirty-four community-dwelling older adults were recruited for the study. Lower-limb muscle power measures included 5STS, the countermovement jump test, and muscle power equations. Isometric handgrip strength, timed “up-and-go!”, the 6 min walking test, one-leg stand, and walking speed at usual and fast paces were used to assess physical performance. Pearson’s correlations and Bland–Altman analyses were conducted to examine associations among muscle power measures. Linear and multiple regressions were run to explore associations of 5STS, the countermovement jump test, and muscle power equations with physical performance tests. Results: Weak correlations were observed among lower-limb muscle power measures. Bland–Altman results indicated important differences among the countermovement jump test, 5STS, and muscle power equations. Results of multiple linear regressions indicated that 5STS, the countermovement jump test, and muscle power equations were significantly associated with measures of muscle strength and mobility. However, only 5STS was significantly associated with balance. Conclusions: Our results indicate that the performance on the countermovement jump test and 5STS is weakly correlated with lower-limb muscle power equations. The only exception was the correlation found between the countermovement jump test and relative muscle power, highlighting the importance of accounting for body mass in muscle power evaluations. Muscle power measures were similarly associated with performance on handgrip strength, timed “up-and-go!”, and the 6 min walking test. The exclusive association of 5STS with balance suggests that a reassessment of 5STS muscle power equations may be warranted.

Publisher

MDPI AG

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