996 resultados para anaerobic threshold soccer


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The aim of this study was to investigate the effects of three weeks of training with intensity monitored on the aerobic capacity of professional soccer players. Fourteen players, members of a first division Brazilian Championship team in 2010, aged 22.78 +/- 3.06 years were evaluated pre and post three weeks of training. The anaerobic threshold intensity LAn was determined by bi-segmented method, for this four submaximal efforts of 800 meters with intensities 10, 12, 14 and 16 km/h were applied. Thirty three training sessions were quantified in zones according to heart rate related to the LAn (FCLAn): Z1 - 10% below, Z2 - 90-100% and Z3 - above the FCLAn. During training participants remained 31.17 +/- 14.86%, 42.96% and 25.87 +/- 14.90 +/- 16.67% in Z1, Z2, and Z3 respectively. There were no significant differences in the LAn (pre = 13,29 +/- 0,71 km.h(-1); post = 12,85 +/- 0,90 km.h(-1)), perceived exertion (pre = 11,53 +/- 1,45 u.a; post = 11,23 +/- 1,53 u.a) and FCLAn (pre = 166,64 +/- 10,69 bpm; post = 174,50 +/- 10,89 bpm) between conditions before and after training, indicating that three weeks of training are insufficient to generate positive changes in soccer players LAn.

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The purpose of the study was to examine the relationships between intermittent high-intensity efforts (RAST) parameters and variables related to aerobic metabolism (anaerobic threshold; LAN, maximal oxygen uptake; VO2MAX and velocity correspondent to VO2MAX; iVO(2MAX)). Eight under-17 (U17) soccer players (16 +/- 1 years) participated in the study. The participants were submitted to a graded exercise test and six maximal sprints of 35m with 10 seconds of passive recovery between each effort (RAST). The RAST parameters were not significant correlated with VO2MAX and LAN. However absolute and relative mean power were significantly correlated with iVO(2MAX) (r=0.79 e r=0.85, respectively). Furthermore, the fatigue index and the relative peak power were significantly correlated with the iVO(2MAX) (r=-0,57 e r=0,73, respectively). In conclusion, the only aerobic variable correlated with performance in consecutive efforts with brief recovery periods, such as RAST, is iVO(2MAX).

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The aims were both to determine lactate and ventilatory threshold during incremental resistance training and to analyze the acute cardiorespiratory and metabolic responses during constant-load resistance exercise at lactate threshold (LT) intensity. Ten healthy men performed 2 protocols on leg press machine. The incremental test was performed to determine the lactate and ventilatory thresholds through an algorithmic adjustment method. After 48 h, a constant-load exercise at LT intensity was executed. The intensity of LT and ventilatory threshold was 27.1 +/- 3.7 and 30.3 +/- 7.9% of 1RM, respectively (P=0.142). During the constant-load resistance exercise, no significant variation was observed between set 9 and set 15 for blood lactate concentration (3.3 +/- 0.9 and 4.1 +/- 1.4 mmol.L-1, respectively. P=0.166) and BORG scale (11.5 +/- 2.9 and 13.0 +/- 3.5, respectively. P=0.783). No significant variation was observed between set 6 and set 15 for minute ventilation (19.4 +/- 4.9 and 22.4 +/- 5.5L. min(-1), respectively. P=0.091) and between S3 and S15 for VO2 (0.77 +/- 0.18 and 0.83 +/- 0.16L. min(-1), respectively. P=1.0). Constant-load resistance exercise at LT intensity corresponds to a steady state of ventilatory, cardio-metabolic parameters and ratings of perceived exertion.

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Determination of an 'anaerobic threshold' plays an important role in the appreciation of an incremental cardiopulmonary exercise test and describes prominent changes of blood lactate accumulation with increasing workload. Two lactate thresholds are discerned during cardiopulmonary exercise testing and used for physical fitness estimation or training prescription. A multitude of different terms are, however, found in the literature describing the two thresholds. Furthermore, the term 'anaerobic threshold' is synonymously used for both, the 'first' and the 'second' lactate threshold, bearing a great potential of confusion. The aim of this review is therefore to order terms, present threshold concepts, and describe methods for lactate threshold determination using a three-phase model with reference to the historical and physiological background to facilitate the practical application of the term 'anaerobic threshold'.

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Se han realizado muchos estudios relacionados con el fútbol, pero pocos con jugadores profesionales evaluándolos en un periodo de dos temporadas consecutivas. El objetivo de este trabajo fue investigar las variaciones que sufren parámetros relacionados con la composición corporal, la velocidad, la fuerza y la resistencia de futbolistas profesionales de alto y medio nivel en el periodo de una temporada. Material y métodos: 20 jugadores de categoría alta (CA) y 21 jugadores de categoría media (CM) fueron evaluados a lo largo de una temporada en tres ocasiones, la primera a mitad de pretemporada (M1), la segunda a mitad del periodo competitivo (M2) y la última al final de la temporada (M3). Algunos de ellos, 16 de CA y 8 de CM participaron durante dos temporadas seguidas realizando un total de seis evaluaciones. En cada evaluación se midió la talla (TA), peso corporal (PC), sumatorio de pliegues grasos (ZP), el índice de masa corporal (IMC), el tiempo en 5 (T5) y 20 (T20) metros, el salto en contra movimiento (CMJ), Abalakov (ABA), la velocidad del umbral anaeróbico (VUAN), el peso de potencia media (PPM) y la potencia media (PMW) en el ejercicio de media sentadilla. Resultados: Hubo diferencias significativas en el ZP en el grupo de CA entre la M1 (45,28±8,98) y la M2 (40,57±5,89) al igual que en la VUAN entre la M1 (12,49±0,67) con respecto a la M2 (12,93±0,62) y la M3 (12,93±0,44). Además, se encontraron diferencias significativas en el grupo CA en la (T5) entre la M1 (1,04±0,06) y la M2 (0,99±0,04) y la M3 (1,00±0,04) y en el grupo CM sólo entre la M1 (1,05±0,05) y la M3 (1,01±0,04). El PPM fue superior en la M2 (94±13,74) con respecto a la M1 (82±13,64) de forma significativa, así como la PMW, M1 (1642,87±207,05) frente a M2 (1735,07±168,01) en el grupo de CA y también hubo diferencias significativas en el PPM entre la M1 (70,67±10,74) y la M2 (80,50±13,20) en el grupo de CM, así como en la PMW en la M1 (1574,90±205,66) con la M2 (1642,87±207,05). Conclusiones: Hubo parámetros condicionales que sufrieron variaciones a lo largo de la temporada. Los cambios más importantes se produjeron desde la mitad del periodo preparatorio hasta la mitad del periodo competitivo, no apreciándose cambios desde la mitad del periodo competitivo hasta el final del mismo. ABSTRACT They have been many studies on soccer, but few with professional players evaluating them during two consecutive seasons. The purpose of this study was to investigate seasonal variations in fitness parameters as body composition, speed, strength and stamina in top and medium class professional soccer players during a hole season. Methods: 20 Top Class male (CA) and 21 Medium Class male (CM) soccer players were evaluated during a season in three different periods. The first one at half preseason (M1), second one at the middle of the competitive period (M2) and last one at the end of the season (M3). 16 players from group CA and 8 from group CM were registered from two seasons in a row, doing a total of 6 evaluation periods. In each evaluation period was measured body height (TA), body mass (PC), skinfolds sum (ZP), body mass index (IMC), acceleration on 5 (T5) y 20 (T20) meters, countermovement jump (CMJ), free arms countermovement jump (ABA), anaerobic threshold speed (VUAN), average power strength weight (PPM) and average power (PMW) on half squat. Results: significant decrease on ZP were found in group CA from M1 (45,28±8,98) to M2 (40,57±5,89) and a significant increase on VUAN from M1 (12,49±0,67) to M2 (12,93±0,62) and M3 (12,93±0,44). Also a significant decrease was found in group CA on (T5) from M1 (1,04±0,06) to M2 (0,99±0,04) and M3 (1,00±0,04). PPM was significantly higher from M2 (94±13,74) to M1 (82±13,64) as PMW from M1 (1642,87±207,05) to M2 (1735,07±168,01) in CA group and also was found a significant increase in group CM on PPM from M1 (70,67±10,74) to M2 (80,50±13,20) and on PMW from M1 (1574,90±205,66) to M2 (1642,87±207,05). Conclusions: Some of the fitness parameters did suffer seasonal variations. The most important changes took place from the middle of the preseason period until middle of the competitive period, remaining unchanged from middle of the competitive period until the end of the season.

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The purpose was to determine the magnitude of aerobic and anaerobic performance factors among elite male football players in different team positions. Thirty-nine players from the highest Swedish division classified as defenders (n=18), midfield players (n=12) or attackers (n=9) participated. Their mean (± sd) age, height and body mass (bm) were 24.4 (±4.7) years, 1.80 (±5.9)m and 79 (±7.6)kg, respectively. Running economy (RE) and anaerobic threshold (AT) was determined at 10, 12, 14, and 16km/h followed by tests of maximal oxygen uptake (VO2max). Maximal strength (1RM) and average power output (AP) was performed in squat lifting. Squat jump (SJ), counter-movement jump with free arm swing (CMJa), 45m maximal sprint and the Wingate test was performed. Average VO2max for the whole population (WP) was 57.0mL O2•kg-1min-1 . The average AT occurred at about 84% of VO2max. 1RM per kg bm0.67 was 11.9±1.3kg. Average squat power in the whole population at 40% 1RM was 70±9.5W per kg bm0.67 . SJ and CMJa were 38.6±3.8cm and 48.9±4.4cm, respectively. The average sprint time (45m) was 5.78± 0.16s. The AP in the Wingate test was 10.6±0.9W•kg-1 . The average maximal oxygen uptake among players in the highest Swedish division was lower compared to international elite players but the Swedish players were better off concerning the anaerobic threshold and in the anaerobic tests. No significant differences were revealed between defenders, midfielders or attackers concerning the tested parameters presented above.

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The purpose was to determine the magnitude of aerobic and anaerobic performance factors among elite male football players in different team positions. Thirty-nine players from the highest Swedish division classified as defenders (n=18), midfield players (n=12) or attackers (n=9) participated. Their mean (± sd) age, height and body mass (bm) were 24.4 (±4.7) years, 1.80 (±5.9)m and 79 (±7.6)kg, respectively. Running economy (RE) and anaerobic threshold (AT) was determined at 10, 12, 14, and 16km/h followed by tests of maximal oxygen uptake (VO2max). Maximal strength (1RM) and average power output (AP) was performed in squat lifting. Squat jump (SJ), counter-movement jump with free arm swing (CMJa), 45m maximal sprint and the Wingate test was performed. Average VO2max for the whole population (WP) was 57.0mL O2•kg-1min-1. The average AT occurred at about 84% of VO2max. 1RM per kg bm0.67 was 11.9±1.3kg. Average squat power in the whole population at 40% 1RM was70±9.5W per kg bm0.67. SJ and CMJa were 38.6±3.8cm and 48.9±4.4cm,respectively. The average sprint time (45m) was 5.78± 0.16s. The AP in the Wingate test was 10.6±0.9W•kg-1. The average maximal oxygen uptake among players in the highest Swedish division was lower compared to international elite players but the Swedish players were better off concerning the anaerobic threshold and in the anaerobic tests. No significant differences were revealed between defenders, midfielders or attackers concerning the tested parameters presented above.

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Background: Skeletal muscle wasting and weakness are significant complications of critical illness, associated with the degree of illness severity and periods of reduced mobility during mechanical ventilation. They contribute to the profound physical and functional deficits observed in survivors. These impairments may persist for many years following discharge from the intensive care unit (ICU) and may markedly influence health-related quality of life. Rehabilitation is a key strategy in the recovery of patients following critical illness. Exercise based interventions are aimed at targeting this muscle wasting and weakness. Physical rehabilitation delivered during ICU admission has been systematically evaluated and shown to be beneficial. However its effectiveness when initiated after ICU discharge has yet to be established. Objectives: To assess the effectiveness of exercise rehabilitation programmes, initiated after ICU discharge, on functional exercise capacity and health-related quality of life in adult ICU survivors who have been mechanically ventilated for more than 24 hours. Search methods:We searched the following databases: the Cochrane Central Register of Controlled Trials (CENTRAL) (The Cochrane Library), OvidSP MEDLINE, Ovid SP EMBASE, and CINAHL via EBSCO host to 15th May 2014. We used a specific search strategy for each database. This included synonyms for ICU and critical illness, exercise training and rehabilitation. We searched the reference lists of included studies and contacted primary authors to obtain further information regarding potentially eligible studies. We also searched major clinical trials registries (Clinical Trials and Current Controlled Trials) and the personal libraries of the review authors. We applied no language or publication restriction. We reran the search in February 2015. We will deal with any studies of interest when we update the review.  Selection criteria:We included randomized controlled trials (RCTs), quasi-RCTs, and controlled clinical trials (CCTs) that compared an exercise interventioninitiated after ICU discharge to any other intervention or a control or ‘usual care’ programme in adult (≥18years) survivors ofcritical illness. Data collection and analysis:We used standard methodological procedures expected by The Cochrane Collaboration. Main results:We included six trials (483 adult ICU participants). Exercise-based interventions were delivered on the ward in two studies; both onthe ward and in the community in one study; and in the community in three studies. The duration of the intervention varied according to the length of stay in hospital following ICU discharge (up to a fixed duration of 12 weeks).Risk of bias was variable for all domains across all trials. High risk of bias was evident in all studies for performance bias, although blinding of participants and personnel in therapeutic rehabilitation trials can be pragmatically challenging. Low risk of bias was at least 50% for all other domains across all trials, although high risk of bias was present in one study for random sequence generation (selection bias), incomplete outcome data (attrition bias) and other sources. Risk of bias was unclear for remaining studies across the domains.All six studies measured effect on the primary outcome of functional exercise capacity, although there was wide variability in natureof intervention, outcome measures and associated metrics, and data reporting. Overall quality of the evidence was very low. Only two studies using the same outcome measure for functional exercise capacity, had the potential for pooling of data and assessment of heterogeneity. On statistical advice, this was considered inappropriate to perform this analysis and study findings were therefore qualitatively described. Individually, three studies reported positive results in favour of the intervention. A small benefit (versus. control)was evident in anaerobic threshold in one study (mean difference, MD (95% confidence interval, CI), 1.8 mlO2/kg/min (0.4 to 3.2),P value = 0.02), although this effect was short-term, and in a second study, both incremental (MD 4.7 (95% CI 1.69 to 7.75) Watts, P value = 0.003) and endurance (MD 4.12 (95% CI 0.68 to 7.56) minutes, P value = 0.021) exercise testing demonstrated improvement.Finally self-reported physical function increased significantly following a rehabilitation manual (P value = 0.006). Remaining studies found no effect of the intervention.Similar variability in with regard findings for the primary outcome of health-related quality of life were also evident. Only two studies evaluated this outcome. Following statistical advice, these data again were considered inappropriate for pooling to determine overall effect and assessment of heterogeneity. Qualitative description of findings was therefore undertaken. Individually, neither study reported differences between intervention and control groups for health-related quality of life as a result of the intervention. Overall quality of the evidence was very low.Mortality was reported by all studies, ranging from 0% to 18.8%. Only one non-mortality adverse event was reported across all patients in all studies (a minor musculoskeletal injury). Withdrawals, reported in four studies, ranged from 0% to 26.5% in control groups,and 8.2% to 27.6% in intervention groups. Loss to follow-up, reported in all studies, ranged from 0% to 14% in control groups, and 0% to 12.5% in intervention groups. Authors’ conclusions:We are unable, at this time, to determine an overall effect on functional exercise capacity, or health-related quality of life, of an exercise based intervention initiated after ICU discharge in survivors of critical illness. Meta-analysis of findings was not appropriate. This was due to insufficient study number and data. Individual study findings were inconsistent. Some studies reported a beneficial effect of the intervention on functional exercise capacity, and others not. No effect was reported on health-related quality of life. Methodological rigour was lacking across a number of domains influencing quality of the evidence. There was also wide variability in the characteristics of interventions, outcome measures and associated metrics, and data reporting.If further trials are identified, we may be able to determine the effect of exercise-based interventions following ICU discharge, on functional exercise capacity and health-related quality of life in survivors of critical illness.

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Objective: It was the aim of this study to evaluate whether chronic pain in athletes is related to performance, measured by the maximum oxygen consumption and production of hormones and cytokines. Methods: Fifty-five athletes with a mean age of 31.9 +/- 4.2 years engaged in regular competition and showing no symptoms of acute inflammation, particularly fever, were studied. They were divided into 2 subgroups according to the occurrence of pain. Plasma concentrations of adrenaline, noradrenaline, cortisol, prolactin, growth hormone and dopamine were measured by radioimmunoassay, and the production of the cytokines interleukin (IL)-1, IL-2, IL-4, IL-6, tumor necrosis factor-alpha, interferon-alpha and prostaglandin E-2 by whole-blood culture. Maximal oxygen consumption was determined during an incremental treadmill test. Results: There was no change in the concentration of stress hormones, but the athletes with chronic pain showed a reduction in maximum oxygen consumption (22%) and total consumption at the anaerobic threshold (25%), as well as increased cytokine production. Increases of 2.7-, 8.1-, 1.7- and 3.7-fold were observed for IL-1, IL-2, tumor necrosis factor-alpha and interferon-alpha, respectively. Conclusions: Our data show that athletes with chronic pain have enhanced production of proinflammatory cytokines and lipid mediators and reduced performance in the ergospirometric test. Copyright (c) 2008 S. Karger AG, Basel.

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Objetivo: Avaliar os efeitos de um programa de exercício aeróbio sobre o condicionamento cardiorrespiratório em gestantes hígidas, de baixo risco, com sobrepeso. Métodos: 92 mulheres gestantes com sobrepeso (índice de massa corporal 26-31kg/m2), idade ≥ 20 anos, idade gestacional ≤ 20 semanas, com ausência de diabetes e hipertensão, foram alocadas aleatoriamente para realizar exercício aeróbio três vezes por semana com uma hora de duração ou para realizar sessões de relaxamento no grupo controle. Foram realizados dois testes de exercício submáximo em esteira, utilizando protocolo de rampa na entrada do estudo e outro teste após 12 semanas. Resultados: Em teste de exercício submáximo 12 semanas após randomização, o consumo de oxigênio (VO2) no limiar anaeróbio aumentou 17% (± 3) no grupo intervenção enquanto reduziu 16% (± 3) no grupo controle, de modo que após 12 semanas de exercício ajustado através da análise de covariância pelo o VO2 no limiar na linha de base, idade gestacional e idade materna foi de 2,68ml/kg/min (IC 95% 1,32-4,03) maior, P = 0,002. Conclusão: Exercício aeróbio realizado em gestantes com sobrepeso produz um aumento no limiar anaeróbio, sobrepondo os efeitos negativos da gestação sobre o condicionamento cardiorrespiratório em mulheres com estilo de vida sedentário.

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Introdução: A histamina exerce vários efeitos no desempenho cardíaco em humanos, os quais são mediados por receptores H1e H2. A ocorrência de bradicardia e distúrbio da condução atrioventricular tem sido descrita após a injeção intravenosa de cimetidina ou ranitidina, porém ainda não foi avaliado seu potencial efeito na resposta cronotrópica ao exercício com suas implicações sobre o valor prognóstico e diagnóstico do teste de esforço Objetivo: Testar a hipótese, através de ensaio clinico randomizado, de que a administração de cimetidina altera a resposta cronotrópica ao exercício. Material e Métodos: Foram submetidos a dois testes cardiopulmonares, 20 indivíduos, após uso de placebo e de cimetidina. Os testes foram realizados em esteira rolante, com protocolo de rampa com analises diretas dos gases expirados. Foi avaliada freqüência cardíaca máxima atingida, além da freqüência cardíaca de repouso e no limiar anaeróbio. Resultados: Os indivíduos estudados estavam igualmente distribuídos por sexo, com idade média (± desvio padrão) de 43 ±11 anos. Os exames com placebo e com cimetidina tiveram igual duração (578 ± 90 seg vs 603 ± 131 seg) e igual VO2 pico (35 ± 8 ml/Kg.min vs 35 ± 8 ml/Kg.min). A administração de cimetidina não apresentou efeito significativo na freqüência cardíaca de repouso (75 ± 10 vs 74 ± 8 bpm), no pico do esforço (176 ± 12 vs176±11 bpm) e, da mesma forma, também não houve diferença entre as freqüências cardíacas de pico e de repouso (101 ± 14 vs101 ± 13 bpm). Conclusão: A administração de cimetidina por sete dias não altera a resposta cronotrópica ao exercício.

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Introdução. Pacientes com insuficiência cardíaca submetidos à ventriculectomia parcial esquerda apresentam melhora na função sistólica do ventrículo esquerdo em repouso, porém continuam apresentando limitação funcional. Objetivo. Para melhor compreender os mecanismos desta limitação funcional, estudamos a função sistólica e diastólica do ventrículo esquerdo em repouso e durante exercício submáximo em pacientes submetidos a ventriculectomia parcial esquerda e em pacientes com insuficiência cardíaca não operados, pareados para capacidade funcional máxima e submáxima. Métodos. Foram estudados 9 pacientes submetidos previamente a ventriculografia parcial esquerda (VPE) e 9 pacientes com insuficiência cardíaca não operados previamente (IC). Todos os pacientes foram submetidos inicialmente a um teste cardiopulmonar para determinação do consumo de oxigênio no limiar anaeróbio (LA) e de pico (VO2 pico). Após, foram estudados através da ventriculografia radioisotópica e analisadas a fração de ejeção (FE) e a taxa máxima de enchimento (TME) do ventrículo esquerdo, em repouso e exercício na intensidade do LA. Resultados. Os grupos apresentaram capacidade funcional semelhante avaliada pelo VO2 pico (VPE: [média ± DP] 13,1 ± 3,3 ml/kg.min; IC: 14,1 ± 3,6 ml/kg.min; P > 0,05) e LA (VPE: 7,9 ± 1.3 ml/kg.min; IC: 8,5 ± 1,6 ml/kg.min; P > 0,05). A frequência cardíaca máxima foi maior no grupo IC em comparação ao grupo da VPE (VPE: 119 ± 20 bpm; IC: 149 ± 21 bpm; P < 0.05) A FE em repouso era mais elevada no grupo VPE (VPE: 40 ± 12 %; IC: 32 ± 9 %; P < 0,0125), entretanto a FE elevou-se do repouso ao LA apenas no grupo IC (VPE: 44 ± 17 %; IC: 39 ± 11 %; P < 0,0125). A TME foi semelhante em repouso (VPE: 1,41 ± 0,55 VDF/s; IC: 1,39 ± 0,55 VDF/s; P > 0,05) e aumentou na intensidade do LA similarmente em ambos os grupos (VPE: 2,28 ± 0,55 VDF/s; IC: 2,52 ± 1,07 VDF/s; P < 0,0125). Conclusão. Pacientes submetidos a ventriculectomia parcial esquerda apresentam uma o limiar anaeróbio (LA) resposta anormal da função sistólica do ventrículo esquerdo ao exercício na intensidade do LA e uma resposta cronotrópica diminuida ao exercício máximo. Essas respostas anormais podem contribuir para a limitada capacidade ao exercício destes pacientes, a despeito da melhora na função ventricular sistólica em repouso.

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This study aimed to determine the influence of strength training (ST), in three weekly sessions over ten weeks, on cardiovascular parameters and anthropometric measurements. It is a before and after intervention trial, with a sample composed of 30 individuals. Participants were adults aged between 18 and 40 years, from both sexes and sedentary for at least three months previously. Tests were computed ergospirometry, CRP, PWV and body composition (dependent variables) before and after the experiment. Independent variables, age and sex, were considered in order to determine their influence on the dependent variablesevaluatedend. By comparing the initial cardiovascular parameters with those obtained after intervention in patients undergoing the ST proposed (a Student s t-test was conducted within each group for samples matched to parameters with normal distribution, while the Wilcoxin was applied for those without), there was no significant difference in PWV(p =0469) or PCR(p =0.247), but there was an increase in anaerobic threshold(AT) (p=0.004) and Maximal Oxygen Uptake(VO2max) (p =0.052). In regard to anthropometric measures, individuals significantly reduced their body fat percentage (p<0.001) and fat mass (p<0,001), as well as increasing lean mass (p<0.001). However, no changes were recorded in the waist-to-hip ratio (WHR) (p= 0.777), body mass (p=0.226) or body mass index (BMI) (p =0.212). Findings of this study lead us to believe that the proposed ST, and did not increase the VOP or PCR improves cardiorespiratory capacity and body composition. Devotees of this training can therefore safely enjoy all its benefits without risk to the cardiovascular system

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The aim of the study was to determine the effect of clenbuterol on the anaerobic-threshold of horses on a tread-mill with increasing physical stress, measuring heart rate (HR) and blood levels of lactate, glucose, and insulin. Twelve Arabian horses. were submitted to two physical tests separated by a 10-day interval. Clenbuterol (CL) at 0.8 mu g/kg or saline (control-C) was administered intravenously 30 minutes, before the test. The treadmill exercise test consisted of an initial warmup followed by a gradually increasing effort. There was no statistical difference in either V-2 or V-4 (velocity at which plasma lactate concentration reached 4 and 2 mmol/L, respectively) between the two-experimental groups. For the CL group, V-200, V-180, V-160, and V-140 (velocity at which the rate heart is 140, 160, 180, and 200 beats/minute, respectively) decreased significantly. At rest as well as times 4, 6, and 10 minutes, insulin levels were higher in the group that recieved clenbuterol (P < .05). Contrary to what was expected, apparently, there was no improvement in aerobic metabolism in animals when given a therapeutic dose of the bronchodilator. The elevated heart rate observed could have been attributable to the stimulation of cardiac beta(1) adrenoceptors and the increased insulin levels to the stimulation of pancreatic beta(2) receptors.

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Poucos são os estudos que possibilitam verificar quais as respostas fisiológicas são associadas ao desempenho em uma amostra de ciclistas de elite nacional. Portanto, o objetivo do presente estudo foi determinar e relacionar diferentes índices fisiológicos aeróbios com o desempenho em testes contra relógio de 4 e 20km em ciclistas de alto nível. A amostra foi composta por 14 ciclistas profissionais de elite nacional do sexo masculino (28,5 ± 4,7 anos, 73,47 ± 8,29 kg, 176 ± 6,76 cm), que realizaram um teste progressivo em laboratório para a determinação do consumo máximo de oxigênio (VO2max: 62,23 ± 8,28 ml·kg·min-1), intensidade relativa ao VO2max (iVO2max: 500,83 ± 58,65 w), economia de movimento (EM: 0,1166 ± 0,0362 ml·kg·min·w-1) e 1º e 2º limiares ventilatórios (LV1: 348,21 ± 43,26 w; LV2: 417,86 ± 60,79 w, respectivamente). Também foram submetidos a duas provas de 4 e 20km contra relógio. Para correlação entre os índices fisiológicos e desempenho, foi utilizado o coeficiente de correlação de Pearson (p< 0,05). Não foi encontrada correlação entre os índices fisiológicos (VO2max absoluto e relativo, iVO2max, EM, LV1 e LV2) e o desempenho de 4km (r= 0.38; 0.16; -0.33; 0.20; -0.50; -0.20, respectivamente) e 20km (r= 0.24; 0.01; -0.13; -0.12; -0.48; -0.19, respectivamente) contra relógio em atletas de alto nível. Estes resultados sugerem que tais variáveis não apresentam capacidade de explicar o desempenho em provas de contra relógio nas respectivas distâncias, provavelmente, devido à homogeneidade entre os sujeitos.