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成熟对高水平年轻足球运动员最大跑步运动后血液动力学和自主控制恢复的影响。

Effect of maturation on hemodynamic and autonomic control recovery following maximal running exercise in highly trained young soccer players.

机构信息

Physiology Unit, Sport Science Department, ASPIRE Academy for Sports Excellence Doha, Qatar.

出版信息

Front Physiol. 2011 Oct 10;2:69. doi: 10.3389/fphys.2011.00069. eCollection 2011.

Abstract

The purpose of this study was to examine the effect of maturation on post-exercise hemodynamic and autonomic responses. Fifty-five highly trained young male soccer players (12-18 years) classified as pre-, circum-, or post-peak height velocity (PHV) performed a graded running test to exhaustion on a treadmill. Before (Pre) and after (5th-10th min, Post) exercise, heart rate (HR), stroke volume (SV), cardiac output (CO), arterial pressure (AP), and total peripheral resistance (TPR) were monitored. Parasympathetic (high frequency [HF(RR)] of HR variability (HRV) and baroreflex sensitivity [Ln BRS]) and sympathetic activity (low frequency [LF(SAP)] of systolic AP variability) were estimated. Post-exercise blood lactate La, the HR recovery (HRR) time constant, and parasympathetic reactivation (time-varying HRV analysis) were assessed. In all three groups, exercise resulted in increased HR, CO, AP, and LF(SAP) (P < 0.001), decreased SV, HF(RR), and Ln BRS (all P < 0.001), and no change in TPR (P = 0.98). There was no "maturation × time" interaction for any of the hemodynamic or autonomic variables (all P > 0.22). After exercise, pre-PHV players displayed lower SV, CO, and La, faster HRR and greater parasympathetic reactivation compared with circum- and post-PHV players. Multiple regression analysis showed that lean muscle mass, La, and Pre parasympathetic activity were the strongest predictors of HRR (r(2) = 0.62, P < 0.001). While pre-PHV players displayed a faster HRR and greater post-exercise parasympathetic reactivation, maturation had little influence on the hemodynamic and autonomic responses following maximal running exercise. HRR relates to lean muscle mass, blood acidosis, and intrinsic parasympathetic function, with less evident impact of post-exercise autonomic function.

摘要

本研究旨在探讨成熟度对运动后血液动力学和自主神经反应的影响。55 名高水平年轻男性足球运动员(12-18 岁)分为预、中、高生长高峰期(PHV),在跑步机上进行分级跑步至力竭。运动前(Pre)和运动后(第 5-10 分钟,Post),监测心率(HR)、每搏量(SV)、心输出量(CO)、动脉压(AP)和总外周阻力(TPR)。评估了迷走神经(HR 变异性的高频 [HF(RR)]和压力反射敏感性[Ln BRS])和交感神经活动(收缩压变异性的低频 [LF(SAP)])。评估了运动后血乳酸 [La](b)、HR 恢复(HRR)时间常数和迷走神经再激活(时变 HRV 分析)。在所有三组中,运动导致 HR、CO、AP 和 LF(SAP)增加(P < 0.001),SV、HF(RR)和 Ln BRS 降低(均 P < 0.001),而 TPR 没有变化(P = 0.98)。对于任何血液动力学或自主神经变量,都没有“成熟度×时间”的交互作用(均 P > 0.22)。运动后,与中、高 PHV 运动员相比,前 PHV 运动员的 SV、CO 和 [La](b)较低,HRR 较快,迷走神经再激活较大。多元回归分析显示,瘦肌肉质量、[La](b)和 Pre 迷走神经活性是 HRR 的最强预测因子(r(2)= 0.62,P < 0.001)。虽然前 PHV 运动员的 HRR 较快,运动后迷走神经再激活较大,但成熟度对最大跑步运动后的血液动力学和自主神经反应影响不大。HRR 与瘦肌肉质量、血液酸中毒和内在迷走神经功能有关,运动后自主神经功能的影响不太明显。

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