Tsukahara Yuka, Iwamoto Jun, Iwashita Kosui, Shinjo Takuma, Azuma Koichiro, Matsumoto Hideo
Institute for Integrated Sports Medicine, Keio University School of Medicine, Tokyo, Japan.
Open Access J Sports Med. 2016 Jan 6;7:5-10. doi: 10.2147/OAJSM.S93047. eCollection 2016.
Whole-body vibration (WBV) exercise is widely used for training and rehabilitation. However, the optimal posture for training both the upper and lower extremities simultaneously remains to be established.
The objective of this study was to search for an effective posture to conduct vibration from the lower to the upper extremities while performing WBV exercises without any adverse effects.
Twelve healthy volunteers (age: 22-34 years) were enrolled in the study. To measure the magnitude of vibration, four accelerometers were attached to the upper arm, back, thigh, and calf of each subject. Vibrations were produced using a WBV platform (Galileo 900) with an amplitude of 4 mm at two frequencies, 15 and 30 Hz. The following three postures were examined: posture A, standing posture with the knees flexed at 30°; posture B, crouching position with no direct contact between the knees and elbows; and posture C, crouching position with direct contact between the knees and elbows. The ratio of the magnitude of vibration at the thigh, back, and upper arm relative to that at the calf was used as an index of vibration conduction.
Posture B was associated with a greater magnitude of vibration to the calf than posture A at 15 Hz, and postures B and C were associated with greater magnitudes of vibration than posture A at 30 Hz. Posture C was associated with a vibration conduction to the upper arm that was 4.62 times and 8.26 times greater than that for posture A at 15 and 30 Hz, respectively.
This study revealed that a crouching position on a WBV platform with direct contact between the knees and elbows was effective for conducting vibration from the lower to the upper extremities.
全身振动(WBV)运动广泛用于训练和康复。然而,同时训练上下肢的最佳姿势仍有待确定。
本研究的目的是寻找一种有效的姿势,在进行WBV运动时,能将振动从下肢传导到上肢,且无任何不良影响。
12名健康志愿者(年龄:22 - 34岁)参与了本研究。为测量振动幅度,在每个受试者的上臂、背部、大腿和小腿上附着了四个加速度计。使用WBV平台(Galileo 900)产生振动,在15和30 Hz两个频率下振幅为4 mm。检查了以下三种姿势:姿势A,膝盖弯曲30°的站立姿势;姿势B,膝盖和肘部无直接接触的蹲姿;姿势C,膝盖和肘部有直接接触的蹲姿。大腿、背部和上臂的振动幅度相对于小腿的振动幅度之比用作振动传导指标。
在15 Hz时,姿势B相对于姿势A,小腿的振动幅度更大;在30 Hz时,姿势B和姿势C相对于姿势A,振动幅度更大。姿势C在15 Hz和30 Hz时,传导到上臂的振动分别比姿势A大4.62倍和8.26倍。
本研究表明,在WBV平台上采用膝盖和肘部直接接触的蹲姿能有效地将振动从下肢传导到上肢。