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业余耐力运动员强化训练期间晨心率变异性与肌酸激酶反应的关系

Relationship Between Morning Heart Rate Variability and Creatine Kinase Response During Intensified Training in Recreational Endurance Athletes.

作者信息

Weippert Matthias, Behrens Martin, Mau-Moeller Anett, Bruhn Sven, Behrens Kristin

机构信息

Institute of Sport Science, University of Rostock, Rostock, Germany.

ISBA University of Cooperative Education, Schwerin, Germany.

出版信息

Front Physiol. 2018 Sep 13;9:1267. doi: 10.3389/fphys.2018.01267. eCollection 2018.

Abstract

Specific physiological responses and their relationship were analyzed in 12 recreational endurance athletes (43.8 ± 7.9 years) during a period of intensified cycling training. Heart rate (HR), HR variability (HRV), serum creatine kinase (S-CK) and haematocrit (Hct) were measured in the mornings before (PRE) and following three consecutive days of intensified training (POST 1-3). Morning HR increased during this period (PRE: 52.2 ± 6.7 bpm, POST 1: 58.8 ± 7.0 bpm, POST 2: 58.5 ± 8.1 bpm, POST 3: 57.9 ± 7.2 bpm; (3,33) = 11.182, < 0.001, η = 0.554). Parasympathetic HRV indices decreased from PRE to POST ((3,33) ≥ 11.588, < 0.001, η ≥ 0.563), no effect was found for sympathetically modulated HRV ((3,33) = 2.287, = 0.101, η = 0.203). Hct decreased (PRE: 49.9 ± 4.0%, POST 1: 46.5 ± 5.1%, POST 2: 45.5 ± 3.8%, POST 3: 43.2 ± 3.4%; (3,33) = 11.909, < 0.001, η = 0.520) and S-CK increased during the training period (PRE: 90.0 ± 32.1 U/L, POST 1: 334.7 ± 487.6 U/L, POST 2: 260.1 ± 303.4 U/L, POST 3: 225.1 ± 258.8 U/L; (3,33) = 3.996, = 0.017, η = 0.285). S-CK release was associated with HR ( = 0.453, = 0.002, = 44), RMSSD ( = -0.494, = 0.001, = 44) and HF-Power ( = -0.490, = 0.001, = 44). A period of intensified training was associated with haemodilution, parasympathetic withdrawal and S-CK-increase. Cardiac autonomic control at morning rest correlated with the S-CK-release; and thus, may serve as a practical mean to complementary monitor and prescribe training load in this population.

摘要

在12名休闲耐力运动员(43.8±7.9岁)进行强化自行车训练期间,分析了他们的特定生理反应及其关系。在强化训练前(PRE)以及连续三天强化训练后的早晨(POST 1 - 3)测量心率(HR)、心率变异性(HRV)、血清肌酸激酶(S - CK)和血细胞比容(Hct)。在此期间早晨心率增加(PRE:52.2±6.7次/分钟,POST 1:58.8±7.0次/分钟,POST 2:58.5±8.1次/分钟,POST 3:57.9±7.2次/分钟;F(3,33)=11.182,p<0.001,η² = 0.554)。从PRE到POST,副交感神经HRV指标下降(F(3,33)≥11.588,p<0.001,η²≥0.563),而交感神经调节的HRV未发现有影响(F(3,33)=2.287,p = 0.101,η² = 0.203)。Hct下降(PRE:49.9±4.0%,POST 1:46.5±5.1%,POST 2:45.5±3.8%,POST 3:43.2±3.4%;F(3,33)=11.909,p<0.001,η² = 0.520),并且在训练期间S - CK增加(PRE:90.0±32.1 U/L,POST 1:334.7±487.6 U/L,POST 2:260.1±303.4 U/L,POST 3:225.1±258.8 U/L;F(3,33)=3.996,p = 0.017,η² = 0.285)。S - CK释放与HR(r = 0.453,p = 0.002,n = 44)、RMSSD(r = -0.494,p = 0.001,n = 44)和HF - Power(r = -0.490,p = 0.001,n = 44)相关。一段时间的强化训练与血液稀释、副交感神经活动减弱和S - CK增加有关。早晨静息时的心脏自主神经控制与S - CK释放相关;因此,可作为该人群补充监测和规定训练负荷的一种实用手段。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9bb/6161148/e7785d56edd1/fphys-09-01267-g001.jpg

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