Scinovex
article Open AccessTop 1% cited

Five basic muscle activation patterns account for muscle activity during human locomotion

The Journal of Physiology · 2004 · Vol. 556(1) · pp. 267–282
Yuri P. IvanenkoR. E. PoppeleFrancesco Lacquaniti

Abstract

An electromyographic (EMG) activity pattern for individual muscles in the gait cycle exhibits a great deal of intersubject, intermuscle and context-dependent variability. Here we examined the issue of common underlying patterns by applying factor analysis to the set of EMG records obtained at different walking speeds and gravitational loads. To this end healthy subjects were asked to walk on a treadmill at speeds of 1, 2, 3 and 5 kmh(-1) as well as when 35-95% of the body weight was supported using a harness. We recorded from 12-16 ipsilateral leg and trunk muscles using both surface and intramuscular recording and determined the average, normalized EMG of each record for 10-15 consecutive step cycles. We identified five basic underlying factors or component waveforms that can account for about 90% of the total waveform variance across different muscles during normal gait. Furthermore, while activation patterns of individual muscles could vary dramatically with speed and gravitational load, both the limb kinematics and the basic EMG components displayed only limited changes. Thus, we found a systematic phase shift of all five factors with speed in the same direction as the shift in the onset of the swing phase. This tendency for the factors to be timed according to the lift-off event supports the idea that the origin of the gait cycle generation is the propulsion rather than heel strike event. The basic invariance of the factors with walking speed and with body weight unloading implies that a few oscillating circuits drive the active muscles to produce the locomotion kinematics. A flexible and dynamic distribution of these basic components to the muscles may result from various descending and proprioceptive signals that depend on the kinematic and kinetic demands of the movements.

Muscle activation and electromyography studiesMotor Control and AdaptationBalance, Gait, and Falls PreventionKinematicsTreadmillElectromyographyContext (archaeology)TrunkGaitSwingPhysical medicine and rehabilitationGait cycleCentral pattern generator

MeSH terms

AdultBiomechanical PhenomenaBody WeightElectromyographyFactor Analysis, StatisticalFemaleGaitHumansLegMaleTime FactorsWeight-BearingMuscle, Skeletal
Citations
1,077
FWCI
16.52
field-weighted impact
References
57
Percentile
100%
vs. same field & year
Citations per year
References
Muscles—Testing and Function.
Archives of Pediatrics and Adolescent Medicine · 1950 · 1,114 citations
Handbook of Physiology. Section 12. Exercise: Regulation and Integration of Multiple Systems
Medicine & Science in Sports & Exercise · 1997 · 921 citations
Internal models for motor control and trajectory planning
Current Opinion in Neurobiology · 1999 · 2,695 citations
EMG profiles during normal human walking: stride-to-stride and inter-subject variability
Electroencephalography and Clinical Neurophysiology · 1987 · 675 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.