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1.
J Strength Cond Res ; 37(9): 1865-1869, 2023 Sep 01.
Artigo em Inglês | MEDLINE | ID: mdl-36719968

RESUMO

ABSTRACT: Lopes dos Santos, M, Thompson, M, Dinyer-McNeely, T, Torrence, T, Lockie, RG, Orr, RM, and Dawes, JJ. Differences and relationships between push-up and sit-up variations among male law enforcement cadets. J Strength Cond Res 37(9): 1865-1869, 2023-The purpose of this study was to explore variation-dependent differences in push-up and sit-up tests, as well as to identify the relationships between push-up and sit-up variations commonly performed among tactical personnel. Data from 41 (age = 21.1 ± 1.8 years, body mass = 89.5 ± 15.5 kg) male police cadets from one US-based training academy who performed the standard push-up (PU Standard ), hand-release push-up (PU Hand-release ), standard sit-up (SU Standard ), and hands behind the head sit-up (SU BehindHead ) were examined. The maximum number of repetitions completed for each exercise was used for analyses with paired-samples t tests used to identify significant differences between outcome measures and effect sizes (ES) to determine change in magnitude. A significant difference, with a large ES, was found in the number of repetitions completed between the push-up variations ( p < 0.001, ES = 0.75) and sit-up variations ( p < 0.001, ES = 1.02). Performance in PU Standard was only able to explain 39% of the variation in PU Hand-release ( r = 0.62, r2 = 0.39, p < 0.001), and performance in the SU Standard was only able to explain 29% of the variation in SU BehindHead ( r = 0.54, r2 = 0.29, p < 0.001). The current study suggests differences in performance capabilities may be dependent on the push-up and sit-up variations chosen for testing. Although it is still unclear whether one variation would be a better predictor of police work performance, agencies must give special attention to the overall construct validity of fitness tests for entry and retention of law enforcement officers.


Assuntos
Teste de Esforço , Aptidão Física , Humanos , Masculino , Adulto Jovem , Aplicação da Lei , Polícia , Estudos Retrospectivos
2.
J Strength Cond Res ; 37(1): 220-223, 2023 Jan 01.
Artigo em Inglês | MEDLINE | ID: mdl-36515609

RESUMO

ABSTRACT: Lopes dos Santos, M, Mann, JB, Berton, R, Alvar, B, Lockie, RG, and Dawes, JJ. Using the load-velocity profile for predicting the 1RM of the hexagonal barbell deadlift exercise. J Strength Cond Res 37(1): 220-223, 2023-The aim of this study was to determine whether bar velocity can be used to estimate the 1 repetition maximum (1RM) on the hexagonal bar deadlift (HBD). Twenty-two National Collegiate Athletic Association Division I male ice hockey players (age = 21.0 ± 1.5 years, height = 182.9 ± 7.3 cm, and body mass = 86.2 ± 7.3 kg) completed a progressive loading test using the HBD at maximum intended velocity to determine their 1RM. The mean concentric velocity was measured for each load through a linear position transducer. The a priori alpha level of significance was set at p = 0.05. The mean concentric velocity showed a very strong relationship to %1RM (R2 = 0.85). A nonsignificant difference and a trivial effect size (ES) were observed between the actual and predicted 1RM (p = 0.90, ES = -0.08). Near-perfect correlations were also discovered between the actual and predicted 1RM (R = 0.93) with low typical error and coefficient of variation (5.11 kg and 2.53%, respectively). This study presented results that add the HBD to the list of exercises with established load-velocity relationships. The predictive ability for 1RM HBD indicates that this is a viable means of prediction of 1RM.


Assuntos
Treinamento Resistido , Levantamento de Peso , Humanos , Masculino , Adulto Jovem , Adulto , Força Muscular , Exercício Físico , Treinamento Resistido/métodos
3.
J Strength Cond Res ; 37(4): 881-886, 2023 Apr 01.
Artigo em Inglês | MEDLINE | ID: mdl-36026479

RESUMO

ABSTRACT: Dawes, JJ, Lopes dos Santos, M, Kornhauser, C, Holmes, RJ, Alvar, BA, Lockie, RG, and Orr, RM. Longitudinal changes in health and fitness measures among state patrol officers by sex. J Strength Cond Res 37(4): 881-886, 2023-Research suggests that police officers lose fitness as a result of their policing vocation with occupational factors like stress, shift work, poor sleep, and poor diet all contributors to this loss The purpose of this research was to measure changes in fitness test scores of qualified police officers over a 5-year period. Archived fitness data for 523 state patrol officers ( n = 494 men; 29 women) from one agency were used for this analysis. These tests included 60-second sit-up [SU] and push-up [PU] scores (muscular endurance), vertical jump height [VJ] (lower-body power), and 20-m multistage fitness test (aerobic capacity). A series of paired-samples t-tests and effect size calculations were used to investigate mean differences in fitness tests score at the beginning and end of a 5-year period. The paired-samples t test showed significant tests score decreases among male officers over the 5-year period in VJ, PU, and V̇ o2 max , , with no differences observed in SU performance. Small effect sizes were observed in both VJ ( g = -0.20) and PU ( g = -0.27) with a trivial effect size observed in changes to V̇ o2 max ( g = -0.14). In contrast, significant improvements in performance were observed in SU performance among female officers, with a small effect size ( g = 0.38). No other significant differences were found in female measures. Whether at an organizational or individual level, annual fitness assessments for police officers can serve to educate and motivate officers regarding their personal fitness and potentially slow the negative impact of aging on health, fitness, and performance in these populations.


Assuntos
Teste de Esforço , Aptidão Física , Humanos , Masculino , Feminino , Estudos Retrospectivos , Polícia , Ocupações
4.
J Sports Med Phys Fitness ; 62(4): 457-466, 2022 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-34256535

RESUMO

BACKGROUND: Prescribing load at the peak power output (PPO) is one of the strategies utilized to enhance lower-body muscle power. PPO of an exercise is determined based on a relative percentage of the one-repetition maximum test (1RM). However, 1RM tests may be impractical in some weightlifting derivatives. This study aimed to identify the PPO of the hang power clean (HPC), hang high pull (HHP), and mid-thigh clean pull (MTCP) based on a relative percentage of body mass (BM). METHODS: Fifteen males with weightlifting experience performed HPC, HHP, and MTCP at loads ranging from 30-90% BM. Kinematic data were collected through a 16-camera infrared motion capture system and processed based on a three-dimensional lower-extremity model. Ground reaction force (GRF) data were collected from two force plates. PPO was calculated as the product of model center of mass velocity and combined vertical GRF during the concentric phase. RESULTS: PPO occurred at 90% BM for the HPC. In addition, the PPO occurred at 90% BM for the HHP and it was not different than 70% and 80% BM. At last, the PPO for MTCP occurred at 80% BM and it was not different than 60% and 70% BM. CONCLUSIONS: Relative percentages of BM can be used to determine PPO in the HPC, HHP, and MTCP. PPO during HPC is achieved at 90% BM, while the PPO for HHP and MTCP is achieved between 70% to 90% BM and 60 to 80% BM, respectively.


Assuntos
Treinamento Resistido , Coxa da Perna , Fenômenos Biomecânicos , Humanos , Extremidade Inferior/fisiologia , Masculino , Força Muscular/fisiologia , Músculo Esquelético/fisiologia , Treinamento Resistido/métodos , Levantamento de Peso/fisiologia
6.
Artigo em Inglês | MEDLINE | ID: mdl-33345034

RESUMO

College students are required to manage a variety of stressors related to academic, social, and financial commitments. In addition to the burdens facing most college students, collegiate athletes must devote a substantial amount of time to improving their sporting abilities. The strength and conditioning professional sees the athlete on nearly a daily basis and is able to recognize the changes in performance and behavior an athlete may exhibit as a result of these stressors. As such, the strength and conditioning professional may serve an integral role in the monitoring of these stressors and may be able to alter training programs to improve both performance and wellness. The purpose of this paper is to discuss stressors experienced by collegiate athletes, developing an early detection system through monitoring techniques that identify the detrimental effects of stress, and discuss appropriate stress management strategies for this population.

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