Humanoid robot learns to walk in 48 hours via virtual reinforcement learning
HMND 01 Alpha achieved stable bipedal walking just 48 hours after assembly using virtual reinforcement learning, reducing development time from 18-24 months to five months. This represents a significant acceleration in robot learning and deployment, potentially transforming how humanoid robots are trained and commercialized.
FAST-LIVO2: Fast Direct LIDAR-Inertial-Visual Odometry for Robotics
This IEEE T-RO paper presents a novel sensor fusion framework that tightly integrates LIDAR, inertial, and visual data for robust state estimation. It achieves high-speed, accurate odometry in challenging environments, representing a peer-reviewed advance in robotics navigation.
EgoMimic: Robots Learn Household Tasks from First-Person Video
Georgia Tech's EgoMimic algorithm allows humanoid robots to learn complex household tasks by watching first-person videos, achieving up to 400% performance improvement with only 90 minutes of footage. This represents a significant advancement in imitation learning, reducing the need for extensive robot-specific data collection.
World-first teleoperated humanoid robots perform surgery in US preclinical trial
UC San Diego researchers achieved a world first by using teleoperated humanoid robots, Surgie, to perform two surgeries in a preclinical trial, including a gallbladder removal and a dual-robot operation. This demonstrates a novel capability for remote surgery with humanoid platforms, marking a significant step toward autonomous surgical systems.
interestingengineering.com Foundation Models as the True Breakthrough in Robotics
The article argues that the key advancement in robotics is not hardware but the new class of foundation models for physical AI, enabling breakthroughs in perception, world modeling, and humanoid development. This represents a paradigm shift toward software-driven intelligence in robotics.
First live surgery performed by teleoperated humanoid robots
Surgeons at UC San Diego successfully used two teleoperated humanoid robots to perform live surgical procedures for the first time, moving beyond fixed robotic arms. This milestone demonstrates the potential for humanoid robots to enable remote surgery in complex environments.
Humanoid robots perform first laparoscopic gallbladder surgery
This marks the first time humanoid robots have been used to perform laparoscopic gallbladder surgery, even on pigs, demonstrating a new capability for teleoperated surgical applications. The preclinical trial at UC San Diego shows potential for expanding remote surgery to humanoid platforms, which could increase access to specialized care.
Unitree Robot Sets World Record in 1500m Run at Humanoid Robot Games
Unitree's humanoid robot won gold in the 1500m run at the World Humanoid Robot Games in August 2025, setting a world record of 6 minutes and 34 seconds. This demonstrates significant progress in bipedal locomotion speed and endurance for humanoid robots. The achievement marks a first-of-its-kind capability in competitive robotics.
Soft Robots with Light-Responsive Materials and Programmable Skins
This NSF article reports a genuine breakthrough in soft robotics, combining light-responsive materials for control and power, programmable skins that change shape, and variable-stiffness materials for amphibious operation. These innovations enable unprecedented versatility and adaptability, potentially transforming health care, fabrication, and materials research.
AI model gives robots visual imagination via video training
Harvard researchers developed a novel AI model that uses video training to enhance robots' ability to generalize knowledge in new situations, advancing vision-language-action systems. This represents a first-of-its-kind capability in peer-reviewed research, enabling robots to imagine visual outcomes before acting.
Soft Robotics: New Paradigm for Robot Bodyware and Control
This research article presents a paradigm shift from rigid robot assumptions to soft materials, driven by biomimetics. It opens new perspectives for applications in biomedical, service, and rescue robotics, marking a first-of-its-kind comprehensive review and framework.
Programmable soft materials enable direction-based robotics via shear-jamming
HKUST engineers developed soft composites with programmable mechanical responses using shear-jamming transitions. This allows materials to stiffen under shear while remaining flexible, enabling smarter, direction-based robotics for bio-inspired robots and medical devices.
interestingengineering.com Quanten's DR motor boosts robot actuator efficiency by 40%, halves weight
Quanten Technologies' multi-phase dynamically reconfigurable motor achieves 70% efficiency at heavy loads, a 40% improvement over traditional BLDC motors, while cutting weight by 50% and reducing heat. This represents a significant step forward in robotic actuation, enabling more capable and energy-efficient robots.
Rider-Bot achieves world-first unassisted front flip on a bicycle
This marks the first time a robot has performed a front flip on a bicycle without external assistance, demonstrating advanced balance and control algorithms. The achievement showcases progress in dynamic robotic locomotion and could inspire future applications in autonomous vehicles and humanoid robotics.
Bolt humanoid robot sets 22 mph speed record
MirrorMe Technology's Bolt humanoid robot achieved a real-world top speed of 22 mph, making it the fastest running humanoid robot outside simulations. This demonstrates significant progress in bipedal locomotion and control systems for humanoid robotics.