Faculty of Sport Sciences, Waseda University, Tokorozawa, Saitama, Japan.
Institute of Physical Education, Keio University, Yokohama, Kanagawa, Japan.
J Sports Sci Med. 2019 Feb 11;18(1):58-64. eCollection 2019 Mar.
Static stretching increases flexibility but can decrease muscle strength; therefore, a method that would avoid the latter has been longed for. In this study, a novel stretching modality was developed that provides repetitive small length changes to the plantar flexor muscles undergoing passive static stretching (minute oscillation stretching). We investigated the effects of minute oscillation stretching on muscle strength and flexibility and its continuance. Isometric plantar flexion strength and maximal ankle joint dorsiflexion angle (dorsiflexion range of motion) were measured in 10 healthy young men (22 ± 2 years) before (pre) and immediately after (post) 3 types of stretching: static stretching, minute oscillation stretching at 15 Hz, and no intervention (control). The dorsiflexion range of motion was also measured at 15, 30, and 60 min post-stretching. Elongation of the medial gastrocnemius and Achilles tendon was determined by ultrasonography. Plantar flexion strength significantly decreased by 4.3 ± 3.5% in static stretching but not in minute oscillation stretching. The dorsiflexion range of motion significantly increased both in static stretching (7.2 ± 8.1%) and minute oscillation stretching (11.2 ± 14.6%), which was accompanied by a significantly larger muscle elongation but not tendon elongation. Elevated dorsiflexion range of motion was maintained until 30 min after minute oscillation stretching, while levels returned to baseline (pre-intervention) 15 min after static stretching. All variables remained unchanged in the control condition. In conclusion, minute oscillation stretching improves extensibility of the muscle belly without decreasing strength. Furthermore, the augmented flexibility to a similar extent to static stretching is retained for 30 min in minute oscillation stretching and within 15 min in static stretching.
静态伸展可增加柔韧性,但会降低肌肉力量;因此,人们一直渴望有一种方法可以避免后者。在这项研究中,开发了一种新的伸展方式,可对进行被动静态伸展的跖屈肌(微振动伸展)提供重复的小长度变化。我们研究了微振动伸展对肌肉力量和柔韧性及其持续时间的影响。10 名健康年轻男性(22 ± 2 岁)在 3 种伸展方式(静态伸展、15 Hz 的微振动伸展和无干预(对照))之前(预)和之后(后)立即测量等长跖屈强度和最大踝关节背屈角度(背屈运动范围)。在伸展后 15、30 和 60 分钟还测量了背屈运动范围。通过超声测量内侧腓肠肌和跟腱的伸长。静态伸展会使跖屈强度显著降低 4.3 ± 3.5%,但微振动伸展不会。静态伸展(7.2 ± 8.1%)和微振动伸展(11.2 ± 14.6%)都会使背屈运动范围显著增加,这伴随着肌肉伸长的显著增加而不是肌腱伸长。微振动伸展后的背屈运动范围可维持 30 分钟,而静态伸展后 15 分钟则恢复到基线(干预前)水平。对照条件下所有变量均无变化。总之,微振动伸展可改善肌腹的伸展性而不降低力量。此外,在微振动伸展中,类似于静态伸展的增强柔韧性可保持 30 分钟,而在静态伸展中则可保持 15 分钟。