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运动范围和等长预激活对等速扭矩的影响。

The effect of range of motion and isometric pre-activation on isokinetic torques.

作者信息

Narici M V, Sirtori M D, Mastore S, Mognoni P

机构信息

Reparto di Fisiologia del Lavoro Muscolare, Istituto di Tecnologie Biomediche Avanzate, Milan, Italy.

出版信息

Eur J Appl Physiol Occup Physiol. 1991;62(3):216-20. doi: 10.1007/BF00643745.

Abstract

The effect of an increased angle of excursion and isometric pre-activation on isokinetic torques of knee extensors was investigated in five male subjects, mean age 35.0 years, SD 9.6. Peak torque and isoangular torque at 0.52 rad from full knee extension (FKE) were measured when contractions were carried out at 3.14, 4.19 and 5.24 rad.s-1 starting: 1) from a standard knee angle (SA) of 1.57 rad from FKE, 2) from the same starting angle as SA, plus an isometric preload (P) equivalent to 25% of isometric maximal voluntary contraction and 3) from an increased angle of knee flexion (IA), 2.09 rad from FKE plus P. Surface integrated electromyograms (iEMG) of the vastus lateralis muscle in SA and IA + P were also recorded. The IA + P had the effect of increasing peak torque, as compared to SA, on average by 12.0%, SD 7.5% (P less than 0.001) at 3.14 rad.s-1, 19.5%, SD 5.5% (P less than 0.001) at 4.19 rad.s-1, 21.6%, SD 10.7% (P less than 0.001) at 5.24 rad.s-1 and of increasing mean iEMG by 15.7%, SD 7.0% (P less than 0.001) at 5.24 rad.s-1. The IA + P also had the effect of increasing the angle from FKE at which peak torque occurred: from means of 0.80 rad, SD 0.11 to 1.00 rad, SD 0.07 at 3.14 rad.s-1, from 0.65 rad, SD 0.11 to 0.92 rad, SD 0.09 at 4.19 rad.s-1 and from 0.60 rad, SD 0.11 to 0.88 rad, SD 0.11 at 5.24 rad.s-1 (P less than 0.0001).(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在5名男性受试者(平均年龄35.0岁,标准差9.6)中,研究了增加的伸展角度和等长预激活对膝关节伸肌等速扭矩的影响。当收缩以3.14、4.19和5.24弧度·秒⁻¹进行时,测量从完全膝关节伸展(FKE)起0.52弧度处的峰值扭矩和等角扭矩,起始状态如下:1)从FKE起1.57弧度的标准膝关节角度(SA);2)从与SA相同的起始角度,加上相当于等长最大自主收缩25%的等长预负荷(P);3)从增加的膝关节屈曲角度(IA),即FKE起2.09弧度加上P。还记录了SA和IA + P状态下股外侧肌的表面积分肌电图(iEMG)。与SA相比,IA + P具有增加峰值扭矩的作用,在3.14弧度·秒⁻¹时平均增加12.0%,标准差7.5%(P小于0.001),在4.19弧度·秒⁻¹时增加19.5%,标准差5.5%(P小于0.001),在5.24弧度·秒⁻¹时增加21.6%,标准差10.7%(P小于0.001),并且在5.24弧度·秒⁻¹时平均iEMG增加15.7%,标准差7.0%(P小于0.001)。IA + P还具有增加峰值扭矩出现时相对于FKE的角度的作用:在3.14弧度·秒⁻¹时,从平均值0.80弧度,标准差0.11增加到1.00弧度,标准差0.07;在4.19弧度·秒⁻¹时,从0.65弧度,标准差0.11增加到0.92弧度,标准差0.09;在5.24弧度·秒⁻¹时,从0.60弧度,标准差0.11增加到0.88弧度,标准差0.11(P小于0.0001)。(摘要截断于250字)

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