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牵张介导的肥大和力量增加的生理学:一篇叙述性综述。

Physiology of Stretch-Mediated Hypertrophy and Strength Increases: A Narrative Review.

作者信息

Warneke Konstantin, Lohmann Lars H, Lima Camila D, Hollander Karsten, Konrad Andreas, Zech Astrid, Nakamura Masatoshi, Wirth Klaus, Keiner Michael, Behm David G

机构信息

Institute for Exercise, Sport and Health, Leuphana University, Universitätsallee 1, 21335, Lüneburg, Deutschland, Germany.

School of Human Kinetics and Recreation, Memorial University of Newfoundland, St. John's, NL, Canada.

出版信息

Sports Med. 2023 Nov;53(11):2055-2075. doi: 10.1007/s40279-023-01898-x. Epub 2023 Aug 9.

Abstract

Increasing muscle strength and cross-sectional area is of crucial importance to improve or maintain physical function in musculoskeletal rehabilitation and sports performance. Decreases in muscular performance are experienced in phases of reduced physical activity or immobilization. These decrements highlight the need for alternative, easily accessible training regimens for a sedentary population to improve rehabilitation and injury prevention routines. Commonly, muscle hypertrophy and strength increases are associated with resistance training, typically performed in a training facility. Mechanical tension, which is usually induced with resistance machines and devices, is known to be an important factor that stimulates the underlying signaling pathways to enhance protein synthesis. Findings from animal studies suggest an alternative means to induce mechanical tension to enhance protein synthesis, and therefore muscle hypertrophy by inducing high-volume stretching. Thus, this narrative review discusses mechanical tension-induced physiological adaptations and their impact on muscle hypertrophy and strength gains. Furthermore, research addressing stretch-induced hypertrophy is critically analyzed. Derived from animal research, the stretching literature exploring the impact of static stretching on morphological and functional adaptations was reviewed and critically discussed. No studies have investigated the underlying physiological mechanisms in humans yet, and thus the underlying mechanisms remain speculative and must be discussed in the light of animal research. However, studies that reported functional and morphological increases in humans commonly used stretching durations of > 30 min per session of the plantar flexors, indicating the importance of high stretching volume, if the aim is to increase muscle mass and maximum strength. Therefore, the practical applicability seems limited to settings without access to resistance training (e.g., in an immobilized state at the start of rehabilitation), as resistance training seems to be more time efficient. Nevertheless, further research is needed to generate evidence in different human populations (athletes, sedentary individuals, and rehabilitation patients) and to quantify stretching intensity.

摘要

增加肌肉力量和横截面积对于改善或维持肌肉骨骼康复中的身体功能以及运动表现至关重要。在身体活动减少或固定不动的阶段,肌肉性能会下降。这些下降凸显了需要为久坐人群提供替代的、易于获得的训练方案,以改善康复和预防损伤的常规做法。通常,肌肉肥大和力量增加与阻力训练相关,阻力训练通常在训练设施中进行。机械张力通常由阻力机器和设备诱发,已知是刺激潜在信号通路以增强蛋白质合成的重要因素。动物研究的结果表明,有一种替代方法可以通过诱导大量拉伸来诱导机械张力,从而增强蛋白质合成,进而增加肌肉肥大。因此,本篇叙述性综述讨论了机械张力诱导的生理适应性及其对肌肉肥大和力量增加的影响。此外,对涉及拉伸诱导肥大的研究进行了批判性分析。从动物研究中得出,对探索静态拉伸对形态和功能适应性影响的拉伸文献进行了综述和批判性讨论。目前尚无研究调查人类的潜在生理机制,因此潜在机制仍属推测,必须根据动物研究进行讨论。然而,报告人类功能和形态增加的研究通常对足底屈肌每次训练使用超过30分钟的拉伸时间,这表明如果目标是增加肌肉质量和最大力量,高拉伸量的重要性。因此,实际适用性似乎仅限于无法进行阻力训练的情况(例如,在康复开始时处于固定状态),因为阻力训练似乎更节省时间。尽管如此,仍需要进一步研究以在不同人群(运动员、久坐个体和康复患者)中产生证据并量化拉伸强度。

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