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Clam internaţional Matematician biological inspired robot stiffness variation sudic Prăpastie Sumbru

Sensors | Free Full-Text | Insect-Inspired Robots: Bridging Biological and  Artificial Systems
Sensors | Free Full-Text | Insect-Inspired Robots: Bridging Biological and Artificial Systems

Robotics-inspired biology
Robotics-inspired biology

Animal-inspired robot legs | Dynamic Locomotion - Max Planck Institute for  Intelligent Systems
Animal-inspired robot legs | Dynamic Locomotion - Max Planck Institute for Intelligent Systems

Reversible stiffness modulation and actuation of a tendril-like soft... |  Download Scientific Diagram
Reversible stiffness modulation and actuation of a tendril-like soft... | Download Scientific Diagram

Soft Robotic Manipulation System Capable of Stiffness Variation and  Dexterous Operation for Safe Human–Machine Interactions - Chen - 2021 -  Advanced Materials Technologies - Wiley Online Library
Soft Robotic Manipulation System Capable of Stiffness Variation and Dexterous Operation for Safe Human–Machine Interactions - Chen - 2021 - Advanced Materials Technologies - Wiley Online Library

Locomotion of an untethered, worm-inspired soft robot driven by a  shape-memory alloy skeleton | Scientific Reports
Locomotion of an untethered, worm-inspired soft robot driven by a shape-memory alloy skeleton | Scientific Reports

overview of soft robotic systems. a, Conception of a future soft... |  Download Scientific Diagram
overview of soft robotic systems. a, Conception of a future soft... | Download Scientific Diagram

A variable-stiffness tendril-like soft robot based on reversible osmotic  actuation | Nature Communications
A variable-stiffness tendril-like soft robot based on reversible osmotic actuation | Nature Communications

Development and analysis of a bio-inspired wire-driven variable stiffness  double spring based tapered multi-section flexible robot | Emerald Insight
Development and analysis of a bio-inspired wire-driven variable stiffness double spring based tapered multi-section flexible robot | Emerald Insight

Tunable stiffness enables fast and efficient swimming in fish-like robots –  ZHONG LAB
Tunable stiffness enables fast and efficient swimming in fish-like robots – ZHONG LAB

Bioinspired dual-stiffness origami | Science Robotics
Bioinspired dual-stiffness origami | Science Robotics

Bio-inspired finger concept: (a) anatomic sketch of the human index... |  Download Scientific Diagram
Bio-inspired finger concept: (a) anatomic sketch of the human index... | Download Scientific Diagram

A Light Touch May Help Animals and Robots Move on Sand and Snow | News  Center
A Light Touch May Help Animals and Robots Move on Sand and Snow | News Center

A jump for soft-bodied robots
A jump for soft-bodied robots

A soft robot that adapts to environments through shape change | Nature  Machine Intelligence
A soft robot that adapts to environments through shape change | Nature Machine Intelligence

Frontiers | Design, Modeling, Control, and Application of Everting Vine  Robots
Frontiers | Design, Modeling, Control, and Application of Everting Vine Robots

Actuators | Free Full-Text | Current Trends and Prospects in Compliant  Continuum Robots: A Survey | HTML
Actuators | Free Full-Text | Current Trends and Prospects in Compliant Continuum Robots: A Survey | HTML

Novel bio-inspired variable stiffness soft actuator via fiber-reinforced  dielectric elastomer, inspired by Octopus bimaculoides | SpringerLink
Novel bio-inspired variable stiffness soft actuator via fiber-reinforced dielectric elastomer, inspired by Octopus bimaculoides | SpringerLink

Biology and bioinspiration of soft robotics: Actuation, sensing, and system  integration - ScienceDirect
Biology and bioinspiration of soft robotics: Actuation, sensing, and system integration - ScienceDirect

Applied Sciences | Free Full-Text | Bio-Inspired Optimal Control Framework  to Generate Walking Motions for the Humanoid Robot iCub Using Whole Body  Models
Applied Sciences | Free Full-Text | Bio-Inspired Optimal Control Framework to Generate Walking Motions for the Humanoid Robot iCub Using Whole Body Models

A resonant squid-inspired robot unlocks biological propulsive efficiency |  Science Robotics
A resonant squid-inspired robot unlocks biological propulsive efficiency | Science Robotics