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The microcycle of inflammation and performance changes after a basketball match

机译:篮球比赛后炎症和运动的微循环发生变化

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Basketball incorporates intense eccentric muscle activity that induces muscle microtrauma and an inflammatory response. This study investigated time-dependent inflammatory and performance responses during a weekly microcycle after a basketball match. Twenty elite-standard players underwent a trial that comprised a match followed by a 6-day simulated in-season microcycle. The trial was preceded by a control condition that did not have a match. Blood sampling and tests of maximal-intensity exercise performance and muscle damage occurred before each condition, immediately after the match and daily thereafter for 6 consecutive days. The match induced marked increases in heart rate, lactate, ammonia, glucose, non-esterified fatty acids and triglycerides. Performance deteriorated for 24-48 h after the match, whereas knee flexor and extensor soreness increased for 48 and 24 h post-match, respectively. Inflammatory (leukocytes, C-reactive protein, creatine kinase activity, adhesion molecules, cortisol, uric acid and cytokines) and oxidative stress (malondialdehyde, protein carbonyls, oxidised glutathione, antioxidant capacity, catalase and glutathione peroxidase) markers increased for ~24 h and subsided thereafter. Reduced glutathione declined for 24 h after exercise. These results suggest that a basketball match elicits moderate and relatively brief (~24-48 h) inflammatory responses, is associated with marked but short-lived performance deterioration, but is less stressful than other intermittent-type sports.
机译:篮球融合了强烈的偏心肌肉活动,可诱发肌肉微伤和炎症反应。这项研究调查了篮球比赛后每周一次的微循环中随时间变化的炎症反应和表现反应。 20名精英标准球员经过了一场试验,其中包括一场比赛,然后进行为期6天的模拟季节微循环。在试验之前,没有对照的对照条件。在每种情况之前,比赛刚结束后以及此后每天连续进行六天的血液采样以及最大强度运动表现和肌肉损伤的测试。匹配引起心率,乳酸,氨,葡萄糖,非酯化脂肪酸和甘油三酸酯的明显增加。比赛后24-48小时内表现恶化,而比赛后48小时和24小时内膝部屈肌和伸肌酸痛分别增加。炎症(白细胞,C反应蛋白,肌酸激酶活性,粘附分子,皮质醇,尿酸和细胞因子)和氧化应激(丙二醛,蛋白羰基,氧化型谷胱甘肽,抗氧化能力,过氧化氢酶和谷胱甘肽过氧化物酶)标记增加了约24小时,并且此后平息。运动后24小时内还原型谷胱甘肽下降。这些结果表明,篮球比赛会引起中度和相对短暂的(〜24-48小时)炎症反应,与明显但短暂的性能下降相关,但与其他间歇性运动相比压力较小。

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