De Cock A, Vanrenterghem J, Willems T, Witvrouw E, De Clercq D
Department of Movement and Sport Sciences, Faculty of Medicine and Health Sciences, Ghent University, Watersportlaan 2, B-9000 Ghent, Belgium.
Gait Posture. 2008 May;27(4):669-75. doi: 10.1016/j.gaitpost.2007.08.013. Epub 2007 Nov 9.
The main purpose of this study was to describe and interpret the COP trajectory during barefoot running in a large cohort of young adults with no history of injury. COP data were collected from 215 subjects, who ran at 3.3 ms(-1) over a 16.5m long track, with a built in Footscan pressure platform. COP data were filtered using a 50 Hz lowpass butterworth filter and normalised. Reliability was then studied and mean curves were calculated for medial-lateral displacement (COP(x)) and velocity (v(x)COP), anterior-posterior displacement (COP(y)) and velocity (v(y)COP) as well as for the resultant velocity (v(xy)COP). Displacement and velocity of the COP provided insight over functional foot behaviour. A medially oriented peak in v(x)COP was found, which may reflect the fast initial pronation. A laterally oriented second peak in v(x)COP, together with a second peak in v(y)COP, indicated a fast forward shift of the COP over the lateral border of the foot during forefoot contact phase. During the forefoot push off phase, at the level of the metatarsals, anterior velocities of the COP were low and reflected the importance of the forefoot during push off. Finally, the COP course was studied for high arch, normal and low arch feet and indicated, a more lateral COP course for the low arch feet.
本研究的主要目的是描述和解释一大群无损伤史的年轻成年人在赤足跑步过程中的中心压力(COP)轨迹。从215名受试者收集COP数据,他们在一条16.5米长、内置Footscan压力平台的跑道上以3.3米/秒的速度跑步。COP数据使用50赫兹低通巴特沃斯滤波器进行滤波并归一化。然后研究可靠性,并计算内侧-外侧位移(COP(x))和速度(v(x)COP)、前后位移(COP(y))和速度(v(y)COP)以及合成速度(v(xy)COP)的平均曲线。COP的位移和速度提供了对足部功能行为的洞察。发现v(x)COP中有一个向内侧的峰值,这可能反映了快速的初始旋前。v(x)COP中一个向外侧的第二个峰值,以及v(y)COP中的第二个峰值,表明在足趾接触阶段COP在足部外侧边缘上快速向前移动。在足趾蹬离阶段,在跖骨水平,COP的向前速度较低,反映了足趾在蹬离过程中的重要性。最后,研究了高弓足、正常足和低弓足的COP轨迹,结果表明,低弓足的COP轨迹更偏向外侧。