Scinovex
article Open AccessTop 1% cited

Angular momentum in human walking

Journal of Experimental Biology · 2008 · Vol. 211(4) · pp. 467–481
Hugh HerrMarko B. Popović

Abstract

Angular momentum is a conserved physical quantity for isolated systems where no external moments act about a body's center of mass (CM). However, in the case of legged locomotion, where the body interacts with the environment (ground reaction forces), there is no a priori reason for this relationship to hold. A key hypothesis in this paper is that angular momentum is highly regulated throughout the walking cycle about all three spatial directions [|Lt| approximately 0], and therefore horizontal ground reaction forces and the center of pressure trajectory can be explained predominantly through an analysis that assumes zero net moment about the body's CM. Using a 16-segment human model and gait data for 10 study participants, we found that calculated zero-moment forces closely match experimental values (Rx2=0.91; Ry2=0.90). Additionally, the centroidal moment pivot (point where a line parallel to the ground reaction force, passing through the CM, intersects the ground) never leaves the ground support base, highlighting how closely the body regulates angular momentum. Principal component analysis was used to examine segmental contributions to whole-body angular momentum. We found that whole-body angular momentum is small, despite substantial segmental momenta, indicating large segment-to-segment cancellations ( approximately 95% medio-lateral, approximately 70% anterior-posterior and approximately 80% vertical). Specifically, we show that adjacent leg-segment momenta are balanced in the medio-lateral direction (left foot momentum cancels right foot momentum, etc.). Further, pelvis and abdomen momenta are balanced by leg, chest and head momenta in the anterior-posterior direction, and leg momentum is balanced by upper-body momentum in the vertical direction. Finally, we discuss the determinants of gait in the context of these segment-to-segment cancellations of angular momentum.

Robotic Locomotion and ControlBalance, Gait, and Falls PreventionLower Extremity Biomechanics and PathologiesAngular momentumPhysicsGround reaction forceMomentum (technical analysis)Total angular momentum quantum numberMoment (physics)Center of mass (relativistic)Classical mechanicsGeodesyGeology

MeSH terms

Biomechanical PhenomenaHumansModels, BiologicalPostureWalking
Citations
492
FWCI
13.67
field-weighted impact
References
59
Percentile
99%
vs. same field & year
Citations per year
References
Biomechanics and motor control of human movement
Choice Reviews Online · 1990 · 8,507 citations
Mechanical work in terrestrial locomotion: two basic mechanisms for minimizing energy expenditure
American Journal of Physiology-Regulatory, Integrative and Comparative Physiology · 1977 · 1,425 citations
The Use of Ranks to Avoid the Assumption of Normality Implicit in the Analysis of Variance
Journal of the American Statistical Association · 1937 · 3,848 citations
Compliant leg behaviour explains basic dynamics of walking and running
Proceedings of the Royal Society B Biological Sciences · 2006 · 942 citations
Multiple Comparisons Using Rank Sums
Technometrics · 1964 · 4,260 citations
A User's Guide to Principal Components
Technometrics · 1993 · 3,347 citations
THE MAJOR DETERMINANTS IN NORMAL AND PATHOLOGICAL GAIT
Journal of Bone and Joint Surgery · 1953 · 1,298 citations
The Use of Ranks to Avoid the Assumption of Normality Implicit in the Analysis of Variance
Journal of the American Statistical Association · 1937 · 4,851 citations
Citation Network

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