The effects of muscle length and force output on the EMG power spectrum of the erector spinae

被引:64
作者
Mannion, AF
Dolan, P
机构
[1] Department of Anatomy, University of Bristol, Bristol
[2] Department of Anatomy, University of Bristol, Bristol BS2 8EJ, Southwell Street
基金
英国医学研究理事会;
关键词
surface electromyography; power spectrum; median frequency; erector spinae; isometric contraction;
D O I
10.1016/1050-6411(95)00028-3
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
In many skeletal muscles the myoelectric power spectrum median frequency (MF) increases with increasing force output, possibly reflecting the greater size and conduction velocity of the later-recruited (fast twitch) fibres. Muscles, such as the erector spinae, in which fast twitch fibres are smaller than slow twitch, may display an atypical relationship between force output and median frequency. The present study sought to investigate this possibility. Ten healthy men held forces ranging from 20-80% maximal voluntary contraction (MVC) of the back extensors for 4-6 s, at muscle lengths corresponding to 30, 60 and 90% of the lumbar spine's range of flexion (ROF), RIF was determined from surface electromyograms recorded from thoracic and lumbar regions of the erector spinae. In each region, MF was significantly higher at 30% ROF (short muscle length) than at 60 or 90% ROF (P<0.005) and slightly (but not significantly) higher at 60 than 90% ROF. The muscle length effect on MF may reflect a reduction in conduction velocity of the stretched and narrowed muscle fibres. Force output had a significant effect on MF (P<0.0004), although the shape of the relationship differed between the two levels of the erector spinae: in the thoracic region MF increased with force up to 40-50% MVC and then levelled off, whereas in the lumbar region RIF was relatively stable up to 30-40% MVC and then declined with increasing force. The results suggest that the mean fibre size of the later recruited motor units is, in the thoracic region, larger, and in the lumbar region, smaller, than that of the earlier-recruited motor units. Copyright (C) 1996 Elsevier Science Ltd.
引用
收藏
页码:159 / 168
页数:10
相关论文
共 54 条
[1]   A TECHNIQUE FOR QUANTIFYING THE BENDING MOMENT ACTING ON THE LUMBAR SPINE INVIVO [J].
ADAMS, MA ;
DOLAN, P .
JOURNAL OF BIOMECHANICS, 1991, 24 (02) :117-126
[2]   COMPARISON OF LUMBAR PARAVERTEBRAL EMG PATTERNS IN CHRONIC LOW-BACK PAIN PATIENTS AND NON-PATIENT CONTROLS [J].
AHERN, DK ;
FOLLICK, MJ ;
COUNCIL, JR ;
LASERWOLSTON, N ;
LITCHMAN, H .
PAIN, 1988, 34 (02) :153-160
[3]   MUSCLE-FIBER CONDUCTION-VELOCITY IN MOTOR UNITS OF THE HUMAN ANTERIOR TIBIAL MUSCLE - A NEW SIZE PRINCIPLE PARAMETER [J].
ANDREASSEN, S ;
ARENDTNIELSEN, L .
JOURNAL OF PHYSIOLOGY-LONDON, 1987, 391 :561-571
[4]   THE INFLUENCE OF MUSCLE LENGTH ON MUSCLE-FIBER CONDUCTION-VELOCITY AND DEVELOPMENT OF MUSCLE FATIGUE [J].
ARENDTNIELSEN, L ;
GANTCHEV, N ;
SINKJAER, T .
ELECTROENCEPHALOGRAPHY AND CLINICAL NEUROPHYSIOLOGY, 1992, 85 (03) :166-172
[5]   THE RELATIONSHIP BETWEEN MEAN POWER FREQUENCY OF THE EMG SPECTRUM AND MUSCLE-FIBER CONDUCTION-VELOCITY [J].
ARENDTNIELSEN, L ;
MILLS, KR .
ELECTROENCEPHALOGRAPHY AND CLINICAL NEUROPHYSIOLOGY, 1985, 60 (02) :130-134
[6]   THE HISTOCHEMICAL COMPOSITION OF HUMAN VERTEBRAL MUSCLE [J].
BAGNALL, KM ;
FORD, DM ;
MCFADDEN, KD ;
GREENHILL, BJ ;
RASO, VJ .
SPINE, 1984, 9 (05) :470-473
[7]  
Basmajian J. V., 1985, MUSCLES ALIVE THEIR
[8]   INCREASE IN ELECTROMYOGRAM LOW-FREQUENCY POWER IN NONFATIGUED CONTRACTING SKELETAL-MUSCLE [J].
BAZZY, AR ;
KORTEN, JB ;
HADDAD, GG .
JOURNAL OF APPLIED PHYSIOLOGY, 1986, 61 (03) :1012-1017
[9]  
BELTMAN N, 1994, THESIS U TWENTE
[10]   POWER SPECTRUM ANALYSES OF ELECTROMYOGRAPHIC ACTIVITY - DISCRIMINATORS IN THE DIFFERENTIAL-ASSESSMENT OF PATIENTS WITH CHRONIC LOW-BACK-PAIN [J].
BIEDERMANN, HJ ;
SHANKS, GL ;
FORREST, WJ ;
INGLIS, J .
SPINE, 1991, 16 (10) :1179-1184