Pages that link to "Item:Q1896920"
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The following pages link to A model fo the neuro-musculo-skeletal system for human locomotion. I: Emergence of basic gait (Q1896920):
Displaying 22 items.
- Self-organized control of bipedal locomotion by neural oscillators in unpredictable environment (Q811435) (← links)
- Biologically inspired robotic arm control using an artificial neural oscillator (Q966326) (← links)
- System identification of muscle-joint interactions of the cat hind limb during locomotion (Q999356) (← links)
- Phase plane modeling of leg motion (Q1070970) (← links)
- A model of the neuro-musculo-skeletal system for anticipatory adjustment of human locomotion during obstacle avoidance (Q1377000) (← links)
- Research on walking gait of biped robot based on a modified CPG model (Q1666596) (← links)
- Emergence of bipedal locomotion through entrainment among the neuro-musculo-skeletal system and the environment (Q1817037) (← links)
- A model of limbed locomotion for a four muscle system (Q1851784) (← links)
- Perception-action coupling model for human locomotor pointing (Q1889075) (← links)
- An in silico central pattern generator: silicon oscillator, coupling, entrainment, and physical computation (Q1889170) (← links)
- Modeling of a bipedal locomotor using coupled nonlinear oscillators of Van der Pol (Q1889199) (← links)
- Synthesis of two-dimensional human walking: a test of the \(\lambda\)-model (Q1889240) (← links)
- A model of the neuro-musculo-skeletal system for human locomotion. II: Real-time adaptability under various constraints (Q1896921) (← links)
- Bipedal robotic walking control derived from analysis of human locomotion (Q1990540) (← links)
- Comparative study of forced oscillators for the adaptive generation of rhythmic movements in robot controllers (Q2278563) (← links)
- A model of cerebrocerebello-spinomuscular interaction in the sagittal control of human walking (Q2372993) (← links)
- Neural control exploits changing mechanical advantage and context dependence to generate different feeding responses in Aplysia (Q2500177) (← links)
- Energy efficient and robust rhythmic limb movement by central pattern generators (Q2507292) (← links)
- Control of natural oscillation gait for mechanical locomotors in three dimensional space (Q2812839) (← links)
- Gait generation and stabilization for nearly passive dynamic walking using auto-distributed impulses (Q2821268) (← links)
- Multi-Step Forward Dynamic Gait Simulation (Q2937990) (← links)
- Bifurcation analysis of a two-neuron central pattern generator model for both oscillatory and convergent neuronal activities (Q6663616) (← links)