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动态拉伸对肌肉柔韧性和运动表现的急性影响:对当前文献的分析。

Acute Effects of Dynamic Stretching on Muscle Flexibility and Performance: An Analysis of the Current Literature.

机构信息

INSERM CAPS, UMR 1093, Faculté des Sciences du Sport, Université de Bourgogne-Franche-Comté, BP 27877, 21078, Dijon Cedex, France.

Centre d'Expertise de la Performance, Faculté des Sciences du Sport, Université de Bourgogne-Franche-Comté, BP 27877, 21078, Dijon Cedex, France.

出版信息

Sports Med. 2018 Feb;48(2):299-325. doi: 10.1007/s40279-017-0797-9.

Abstract

Stretching has long been used in many physical activities to increase range of motion (ROM) around a joint. Stretching also has other acute effects on the neuromuscular system. For instance, significant reductions in maximal voluntary strength, muscle power or evoked contractile properties have been recorded immediately after a single bout of static stretching, raising interest in other stretching modalities. Thus, the effects of dynamic stretching on subsequent muscular performance have been questioned. This review aimed to investigate performance and physiological alterations following dynamic stretching. There is a substantial amount of evidence pointing out the positive effects on ROM and subsequent performance (force, power, sprint and jump). The larger ROM would be mainly attributable to reduced stiffness of the muscle-tendon unit, while the improved muscular performance to temperature and potentiation-related mechanisms caused by the voluntary contraction associated with dynamic stretching. Therefore, if the goal of a warm-up is to increase joint ROM and to enhance muscle force and/or power, dynamic stretching seems to be a suitable alternative to static stretching. Nevertheless, numerous studies reporting no alteration or even performance impairment have highlighted possible mitigating factors (such as stretch duration, amplitude or velocity). Accordingly, ballistic stretching, a form of dynamic stretching with greater velocities, would be less beneficial than controlled dynamic stretching. Notwithstanding, the literature shows that inconsistent description of stretch procedures has been an important deterrent to reaching a clear consensus. In this review, we highlight the need for future studies reporting homogeneous, clearly described stretching protocols, and propose a clarified stretching terminology and methodology.

摘要

拉伸在许多体育活动中被广泛应用,以增加关节活动度(ROM)。拉伸对神经肌肉系统还有其他急性影响。例如,单次静态拉伸后,最大自愿力量、肌肉力量或诱发收缩性能会显著降低,这引起了对其他拉伸方式的兴趣。因此,动态拉伸对随后肌肉性能的影响受到了质疑。本综述旨在研究动态拉伸后的表现和生理变化。有大量证据表明,动态拉伸对 ROM 和随后的表现(力量、功率、冲刺和跳跃)有积极影响。更大的 ROM 主要归因于肌肉肌腱单位的刚度降低,而肌肉性能的提高则归因于与动态拉伸相关的自愿收缩引起的温度和增强相关机制。因此,如果热身的目的是增加关节 ROM 并增强肌肉力量和/或功率,那么动态拉伸似乎是静态拉伸的一个合适替代方案。然而,许多研究报告没有改变,甚至表现受损,突出了可能的缓解因素(如拉伸持续时间、幅度或速度)。因此,速度更快的弹振式拉伸,一种动态拉伸形式,其益处可能不如受控动态拉伸。尽管如此,文献表明,拉伸程序描述不一致一直是达成明确共识的一个重要障碍。在本综述中,我们强调了未来研究报告具有一致性、清晰描述的拉伸方案的必要性,并提出了更清晰的拉伸术语和方法。

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