Pages that link to "Item:Q1601196"
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The following pages link to Mechanical models for insect locomotion: Dynamics and stability in the horizontal plane. II: Application. (Q1601196):
Displaying 20 items.
- The load distribution among three legs on the wall: model predictions for cockroaches (Q363680) (← links)
- Kinematics analysis and experiment of a cockroach-like robot (Q415905) (← links)
- Steering by transient destabilization in piecewise-holonomic models of legged locomotion (Q652970) (← links)
- A hexapedal jointed-leg model for insect locomotion in the horizontal plane (Q714173) (← links)
- Self-stability of a simple walking model driven by a rhythmic signal (Q842081) (← links)
- Mechanical models for insect locomotion: Dynamics and stability in the horizontal plane. I: Theory. (Q1601195) (← links)
- Improving horizontal plane locomotion via leg angle control (Q1617362) (← links)
- A model for insect locomotion in the horizontal plane: feedforward activation of fast muscles, stability, and robustness (Q1628848) (← links)
- Dynamics and stability of lateral plane locomotion on inclines (Q1628949) (← links)
- A simple extension of inverted pendulum template to explain features of slow walking (Q1712661) (← links)
- Dynamics and stability of legged locomotion in the horizontal plane: a test case using insects (Q1889013) (← links)
- Mechanical models for insect locomotion: active muscles and energy losses (Q1889236) (← links)
- The effects of feedback on stability and maneuverability of a phase-reduced model for cockroach locomotion (Q1990625) (← links)
- Lyapunov function and the basin of attraction for a single-joint muscle-skeletal model (Q2373252) (← links)
- Leg recirculation in horizontal plane locomotion (Q2376439) (← links)
- Reflexes and preflexes: on the role of sensory feedback on rhythmic patterns in insect locomo\-tion (Q2376475) (← links)
- A dynamic model of thoracic differentiation for the control of turning in the stick insect (Q2460458) (← links)
- Towards a neuromechanical model for insect locomotion: hybrid dynamical systems (Q2569550) (← links)
- A phase-reduced neuro-mechanical model for insect locomotion: feed-forward stability and proprioceptive feedback (Q2997253) (← links)
- Mechanical models for insect locomotion: Stability and parameter studies (Q5947023) (← links)