Mass affects lower extremity muscle activity patterns in children's gait

被引:27
作者
Blakemore, Verity J. [1 ]
Fink, Philip W. [1 ]
Lark, Sally D. [1 ]
Shultz, Sarah P. [1 ]
机构
[1] Massey Univ, Sch Sport & Exercise, Wellington 6041, New Zealand
关键词
Biomechanics; Obesity; Paediatrics; Locomotion; TREADMILL WALKING; CHILDHOOD OBESITY; BIOMECHANICS;
D O I
10.1016/j.gaitpost.2013.02.002
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Overweight children demonstrate biomechanical differences during gait; however it is not known if these differences occur within active or passive tissue. The purpose of this study was to examine differences in lower extremity muscle activation patterns of children with different body mass during three walking speeds. Twenty children (8-12 years) were recruited and classified as overweight (OW), normal-weight (NW), or underweight (UW). Electromyography was recorded for vastus lateralis, semitendinosus, gastrocnemius, and tibialis anterior while participants walked on a treadmill at slow (SP), self-selected (SSP), and fast (FP) speeds. Differences in group and walking speed were analyzed for duration of muscle activation (presented as a percentage of stride, stance, or swing phases). Compared to OW, UW experienced greater duration of vastus lateralis and tibialis anterior activation during the swing phase. OW had greater duration of gastrocnemius activation during stride than UW. Increased walking speed resulted in greater duration of vastus lateralis activation for all groups. NW also exhibited greater duration of tibialis anterior activation at faster walking speeds. During FP, OW had greater duration of gastrocnemius activity during stance, but lower duration during swing. These findings are consistent with the idea that children with greater mass adopt a more passive gait strategy during swing to maximize energy recovery. Increased duration of gastrocnemius activity during stance also provides greater stability and stronger propulsion, which corroborates previous research. These findings help to understand the neuromuscular mechanisms associated with previous biomechanical findings in children's gait. (c) 2013 Elsevier B.V. All rights reserved.
引用
收藏
页码:609 / 613
页数:5
相关论文
共 18 条
[1]   The effect of treadmill walking on the stride interval dynamics of children [J].
Fairley, Jillian A. ;
Sejdic, Ervin ;
Chau, Tom .
HUMAN MOVEMENT SCIENCE, 2010, 29 (06) :987-998
[2]   Effects of childhood obesity on three-dimensional knee joint biomechanics during walking [J].
Gushue, DL ;
Houck, J ;
Lerner, AL .
JOURNAL OF PEDIATRIC ORTHOPAEDICS, 2005, 25 (06) :763-768
[3]   Development of recommendations for SEMG sensors and sensor placement procedures [J].
Hermens, HJ ;
Freriks, B ;
Disselhorst-Klug, C ;
Rau, G .
JOURNAL OF ELECTROMYOGRAPHY AND KINESIOLOGY, 2000, 10 (05) :361-374
[4]  
Hills A P, 1993, Electromyogr Clin Neurophysiol, V33, P225
[5]   LOCOMOTOR CHARACTERISTICS OF OBESE CHILDREN [J].
HILLS, AP ;
PARKER, AW .
CHILD CARE HEALTH AND DEVELOPMENT, 1992, 18 (01) :29-34
[6]  
HILLS AP, 1991, ARCH PHYS MED REHAB, V72, P403
[7]  
Hodges PW, 1996, ELECTROMYOGR MOTOR C, V101, P511, DOI 10.1016/S0013-4694(96)95190-5
[8]  
International Obesity Taskforce, 2010, OB GLOB EP
[9]  
Kuczmarski RJ, 2000, AM J CLIN NUTR, V72, P1074
[10]   Biomechanics of overground vs. treadmill walking in healthy individuals [J].
Lee, Song Joo ;
Hidler, Joseph .
JOURNAL OF APPLIED PHYSIOLOGY, 2008, 104 (03) :747-755