Related Experiment Video
Updated: May 13, 2026

Asymmetric Walkway: A Novel Behavioral Assay for Studying Asymmetric Locomotion
Published on: January 15, 2016
Effects of restraining forces on propulsion and other gait characteristics during treadmill walking post-stroke
S Minkes-Weiland1, H Houdijk2, S Floor3
1University of Groningen, University Medical Center Groningen, Department of Human Movement Sciences, Groningen, the Netherlands; Rehabilitation Center 'Revalidatie Friesland', Beetsterzwaag, the Netherlands.
Background:
A decreased propulsive capacity post stroke is associated with a diminished walking ability. When walking with a restraining force applied to the pelvis, more propulsion is required to enable forward progression. This may stimulate propulsion capacity in people post-stroke. Before incorporating restraining forces into training, their effects on propulsion mechanics and other gait characteristics must be evaluated. This study investigated: (1) the immediate bilateral effects of restraining forces during treadmill walking on propulsive force, braking force, and mechanical work in people post-stroke, and (2) the impact of this manipulation on step length symmetry, single support time symmetry and muscle activity. Additionally, we explored whether these effects vary with gait speed and force magnitude.
Methods:
13 individuals post-stroke walked on a treadmill at 0.28 m/s and 0.56 m/s while a horizontal restraining force (0 %, 5 % or 10 % of their body weight) was applied to the pelvis. During walking, ground reaction forces and muscle activity of gluteus Medius, rectus Femoris, vastus Medialis, biceps Femoris, tibialis anterior, medial gastrocnemius and soleus were bilaterally recorded FINDINGS: Applying restraining forces up to 10 % of body weight increased propulsive impulse and mechanical work while reducing braking impulse. Although no significant effects were found on step length symmetry or swing phase symmetry, subtle changes in muscle activity were observed when walking with restraining forces INTERPRETATION: Restraining forces up to 10 % of body weight can activate propulsive capacity. Future research should explore how this direct effect translates into long-term training effects.
More Related Videos
08:24Sit-to-stand-and-walk from 120% Knee Height: A Novel Approach to Assess Dynamic Postural Control Independent of Lead-limb
Published on: August 30, 2016
06:00A Rehabilitation Program of Exoskeleton-assisted Body Weight-Supported Treadmill Training with Non-immersive Virtual Reality for Stroke Patients
Published on: May 16, 2025
Related Concept Videos
Types of Forces
Static and Kinetic Frictional Force
However, if two systems are in contact and are stationary relative to one...
Power Expended by a Constant Force
Static Friction
For example, consider a scenario where a truck is connected to a car by a rope, ready to tow it along a road. When no external force is applied by the truck, the car remains stationary and is said to be in static equilibrium. In this case, the forces acting on the car, such as gravity and the...
Frictional Forces on Flat Belts
Exercise Stress Test
Exercise stress testing, commonly known as a treadmill test, is a noninvasive procedure used to evaluate cardiovascular function and diagnose heart conditions.
Definition
An exercise stress test measures the heart's response to exertion using a treadmill or stationary bicycle. Chest electrodes record the heart's electrical activity through an ECG, and blood pressure is monitored regularly.
Purposes