Walking and running, the two basic gaits used by man, are very complex movements. They can, however, be described using two simple models: an inverted pendulum and a spring. Muscles must contract at each step to move the body segments in the proper sequence but the work done is, in part, relieved by the interplay of mechanical energies, potential and kinetic in walking, and elastic in running. This explains why there is an optimal speed of walking (minimal metabolic cost of about 2 J.kg(-1).m(-1) at about 1.11 m.s(-1)) and why the cost of running is constant and independent of speed (about 4 J.kg(-1).m(-1)). Historically, the mechanical work of locomotion has been divided into external and internal work. The former is the work done to raise...
The muscle-tendon work performed during locomotion can, in principle, be measured from the mechanica...
Simple optimization models show that bipedal locomotion may largely be governed by the mechanical wo...
<div><p>Simple optimization models show that bipedal locomotion may largely be governed by the mecha...
This book offers a succinct but comprehensive description of the mechanics of muscle contraction and...
The work done during each step to lift and to reaccelerate (in the forward direction) and center of ...
The work done at each step during level walking and running to lift the centre of mass of the body, ...
What is the topic of this review? This narrative review explores past and recent findings on the mec...
What is the topic of this review? This narrative review explores past and recent findings on the mec...
NEW FINDINGS: What is the topic of this review? This narrative review explores past and recent findi...
Five subjects walked and ran at overlapping speeds and different gradients on a motorized treadmill....
Five subjects walked and ran at overlapping speeds and different gradients on a motorized treadmill....
Humans walk and run at a range of speeds. While steady locomotion at a given speed requires no net m...
1. The work done at each step to lift and accelerate the centre of mass of the body has been measure...
The energetics and mechanics of walking were investigated at different speeds, both at the freely ch...
The muscle-tendon work performed during locomotion can, in principle, be measured from the mechanica...
The muscle-tendon work performed during locomotion can, in principle, be measured from the mechanica...
Simple optimization models show that bipedal locomotion may largely be governed by the mechanical wo...
<div><p>Simple optimization models show that bipedal locomotion may largely be governed by the mecha...
This book offers a succinct but comprehensive description of the mechanics of muscle contraction and...
The work done during each step to lift and to reaccelerate (in the forward direction) and center of ...
The work done at each step during level walking and running to lift the centre of mass of the body, ...
What is the topic of this review? This narrative review explores past and recent findings on the mec...
What is the topic of this review? This narrative review explores past and recent findings on the mec...
NEW FINDINGS: What is the topic of this review? This narrative review explores past and recent findi...
Five subjects walked and ran at overlapping speeds and different gradients on a motorized treadmill....
Five subjects walked and ran at overlapping speeds and different gradients on a motorized treadmill....
Humans walk and run at a range of speeds. While steady locomotion at a given speed requires no net m...
1. The work done at each step to lift and accelerate the centre of mass of the body has been measure...
The energetics and mechanics of walking were investigated at different speeds, both at the freely ch...
The muscle-tendon work performed during locomotion can, in principle, be measured from the mechanica...
The muscle-tendon work performed during locomotion can, in principle, be measured from the mechanica...
Simple optimization models show that bipedal locomotion may largely be governed by the mechanical wo...
<div><p>Simple optimization models show that bipedal locomotion may largely be governed by the mecha...