Suppr超能文献

重复性股四头肌静力拉伸对心和肌肉骨骼血液动力学的反应。

Heart and musculoskeletal hemodynamic responses to repetitive bouts of quadriceps static stretching.

机构信息

Department of Biomedical Sciences for Health, Università degli Studi di Milano, Milan, Italy.

Department of Neurosciences, Biomedicine and Movement Sciences. University of Verona, Verona, Italy.

出版信息

J Appl Physiol (1985). 2019 Aug 1;127(2):376-384. doi: 10.1152/japplphysiol.00823.2018. Epub 2019 May 30.

Abstract

The role of sympathetic and parasympathetic activity in relation to the repetitive exposure to static stretching (SS) on heart and musculoskeletal hemodynamics in stretched and resting muscles is still a matter of debate. The aim of the study was to determine cardiac and musculoskeletal hemodynamics to repetitive bouts of unilateral SS. Sympathetic and parasympathetic activity contribution to the central hemodynamics and local difference in circulation of stretched and resting muscles were also investigated. In eight participants, heart rate (HR), cardiac output (CO), mean arterial pressure (MAP), HR variability (HRV), blood pressure variability (BPV), and blood flow in passively stretched limb (SL) and control (CL, resting limb) were measured during five bouts of unilateral SS (45 s of knee flexion and 15 s of knee extension). SS increased sympathetic (20%) and decreased parasympathetic activity (30%) with a prevalence of parasympathetic withdrawal. During SS, HR, CO, and MAP increased by ~18 beats/min, ~0.29 l/min, ~12 mmHg, respectively. Peak blood flow in response to the first stretching maneuver increased significantly (+377 ± 95 ml/min) in the SL and reduced significantly (-57 ± 48 ml/min) in the CL. This between-limb difference in local circulation response to SS disappeared after the second SS bout. These results indicate that heart hemodynamic responses to SS are primarily influenced by the parasympathetic withdrawal rather than by the increase in sympathetic activity. The balance between neural and local factors contributing to blood flow regulation was affected by the level of SS exposure, likely associated with differences in the bioavailability of local vasoactive factors throughout the stretching bouts. Repetitive exposure to static stretching (SS) on heart and musculoskeletal hemodynamics in stretched and remote muscles may be influenced by neural and local factors. We documented that SS-induced heart hemodynamic responses are primarily influenced by parasympathetic withdrawal. The balance between neural and local factors contributing to the regulation of musculoskeletal hemodynamics is dependent on SS exposure possibly because of different local vasoactive factor bioavailability during the subsequent stretching bouts.

摘要

在重复进行静态伸展(SS)时,交感和副交感活动与伸展和休息肌肉的心脏和肌肉骨骼血液动力学之间的关系仍然存在争议。本研究旨在确定重复单侧 SS 对心脏和肌肉骨骼血液动力学的影响。还研究了交感和副交感活动对中枢血液动力学和伸展及休息肌肉局部循环差异的贡献。在 8 名参与者中,在 5 次单侧 SS(45 秒膝关节弯曲和 15 秒膝关节伸展)期间测量了心率(HR)、心输出量(CO)、平均动脉压(MAP)、心率变异性(HRV)、血压变异性(BPV)以及被动伸展肢体(SL)和对照肢体(CL,休息肢体)的血流。SS 增加了约 20%的交感神经活动和减少了约 30%的副交感神经活动,副交感神经活动呈现出明显的撤出。在 SS 期间,HR、CO 和 MAP 分别增加了约 18 次/分钟、0.29 升/分钟和 12mmHg。SL 中首次伸展运动引起的血流峰值显著增加(+377±95ml/min),CL 中显著减少(-57±48ml/min)。SS 第二次后,这种双侧肢体间的局部循环对 SS 反应的差异消失。这些结果表明,SS 对心脏血液动力学的反应主要受副交感神经撤出的影响,而不是交感神经活动的增加。神经和局部因素对血流调节的平衡受到 SS 暴露水平的影响,这可能与整个伸展过程中局部血管活性因子的生物利用度不同有关。重复进行静态伸展(SS)可能会影响伸展和远隔肌肉的心脏和肌肉骨骼血液动力学,受神经和局部因素的影响。我们记录到 SS 引起的心脏血液动力学反应主要受副交感神经撤出的影响。神经和局部因素对肌肉骨骼血液动力学调节的平衡取决于 SS 暴露的程度,这可能是由于在随后的伸展过程中局部血管活性因子的生物利用度不同。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验