Contributions of proximal and distal moments to axial tibial rotation during walking and running

被引:71
作者
Bellchamber, TL
van den Bogert, AJ
机构
[1] Cleveland Clin Fdn, Dept Biomed Engn ND20, Cleveland, OH 44195 USA
[2] Univ Calgary, Human Performance Lab, Calgary, AB, Canada
关键词
tibial rotation; power flow; walking; running; orthotics;
D O I
10.1016/S0021-9290(00)00113-5
中图分类号
Q6 [生物物理学];
学科分类号
071011 ;
摘要
The purpose of this study was to determine the cause and effect relationship between tibial internal rotation and pronation of the foot during walking and heel-toe running. This would allow predictions of orthotic effectiveness in reducing knee pain related to excessive internal tibial rotation. Kinematic and force plate data were collected from twenty subjects performing ten running and ten walking trials across a force plate. Using a least-squares algorithm, attitude matrices for each segment in each frame were obtained and the angular velocity vector of the tibia was calculated. The intersegmental moment at the ankle was calculated from ground reaction force and kinematic data, and the power flow from foot to tibia associated with axial tibial rotation was calculated. In walking, all subjects exhibited a clear power flow from tibia to foot during most of the stance phase, indicating that the foot was following the body. This suggests that the use of foot orthoses to reduce knee pain associated with tibial rotation during walking will not be successful. During running, power flow was also mainly proximal to distal, but there were brief periods of opposite power flow. There was more variability between subjects during running, with five subjects having large distal to proximal power flow peaks. These observations may explain and support previous work that has found variable clinical effects of orthoses between patients. (C) 2000 Elsevier Science Ltd. All rights reserved.
引用
收藏
页码:1397 / 1403
页数:7
相关论文
共 18 条
[1]  
BERME N, 1990, BIOMECHANICS HUMAN M, P94
[2]  
Clement D B, 1981, Phys Sportsmed, V9, P47, DOI 10.1080/00913847.1981.11711077
[3]   FOOTWEAR AND FOOT ORTHOTIC EFFECTIVENESS RESEARCH - A NEW APPROACH [J].
CORNWALL, MW ;
MCPOIL, TG .
JOURNAL OF ORTHOPAEDIC & SPORTS PHYSICAL THERAPY, 1995, 21 (06) :337-344
[4]   THE EFFECT OF SOFT FOOT ORTHOTICS ON 3-DIMENSIONAL LOWER-LIMB KINEMATICS DURING WALKING AND RUNNING [J].
ENG, JJ ;
PIERRYNOWSKI, MR .
PHYSICAL THERAPY, 1994, 74 (09) :836-844
[5]   THE FREE MOMENT OF GROUND REACTION IN DISTANCE RUNNING AND ITS CHANGES WITH PRONATION [J].
HOLDEN, JP ;
CAVANAGH, PR .
JOURNAL OF BIOMECHANICS, 1991, 24 (10) :887-897
[6]  
JAMES SL, 1990, BIOMECHANICS DISTANC, P249
[7]   THE SCIENTIFIC BASIS FOR THE USE OF BIOMECHANICAL FOOT ORTHOSES IN THE TREATMENT OF LOWER-LIMB SPORTS INJURIES - A REVIEW OF THE LITERATURE [J].
KILMARTIN, TE ;
WALLACE, WA .
BRITISH JOURNAL OF SPORTS MEDICINE, 1994, 28 (03) :180-184
[8]   FOOT INVERSION-EVERSION AND KNEE KINEMATICS DURING WALKING [J].
LAFORTUNE, MA ;
CAVANAGH, PR ;
SOMMER, HJ ;
KALENAK, A .
JOURNAL OF ORTHOPAEDIC RESEARCH, 1994, 12 (03) :412-420
[9]   Coupling parameters in runners with normal and excessive pronation [J].
McClay, I ;
Manal, K .
JOURNAL OF APPLIED BIOMECHANICS, 1997, 13 (01) :109-124
[10]   EFFECTS OF ARCH HEIGHT OF THE FOOT ON ANGULAR MOTION OF THE LOWER-EXTREMITIES IN RUNNING [J].
NIGG, BM ;
COLE, GK ;
NACHBAUER, W .
JOURNAL OF BIOMECHANICS, 1993, 26 (08) :909-916