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In 2025, nearly 200,000 professional service robots were sold globally, marking a 9% increase. Notably, the cleaning robots segment saw a significant rise of 34%, while medical robots experienced an impressive growth of 91%. These statistics indicate a shift from experimental use to economically viable applications in sectors such as logistics, healthcare, and agriculture. The data, derived from the World Robotics 2025 – Service Robots report by the International Federation of Robotics (IFR), highlights the growing maturity of service robotics in various industries. With over 199,000 units sold in 2024, the figures reveal that while some categories like hospitality robots are declining, others are rapidly advancing, particularly in logistics, which surpassed 100,000 units sold. Looking ahead, the service robotics market is expected to continue its strong growth trajectory into 2026 and beyond. The IFR's report underscores the importance of identifying sectors where automation is achieving economic viability, suggesting a promising future for service robots in diverse applications.
RobotMagazine By Christophe Carl Louis Aug 13, 2026 À la une Humanoide IA Industrie Robotique AMR
Researchers from the University of Leeds and the University of California San Diego received the Best Paper Award at RoboSoft for their innovative work in soft robotics. They developed a 1.8 mm soft growing robot that operates without internal pressure, allowing for safer interactions with delicate tissues during medical procedures. This advancement is significant as it addresses critical issues in minimally invasive surgeries, such as reducing friction and improving patient comfort. The robot's ability to grow and steer simultaneously enhances its usability, making it a promising tool for complex anatomical regions where precision is vital. Looking ahead, the implications of this technology could lead to improved patient outcomes in various medical applications. No further timeline was disclosed at the time of publication.
Robohub.org By IEEE Robotics and Automation Society (RAS) Jul 23, 2026
A collaborative research team from Beihang University in China and Koç University in Turkey has created a groundbreaking millimeter-scale soft robot that mimics the movement of snails. This innovative robot employs a unique fluid transport mechanism, enabling it to traverse slippery and intricate surfaces with ease. The development holds significant promise for advancing the design of future medical micro-robots, potentially enhancing their functionality in various applications. The team's findings were recently published in the esteemed journal 'Science Advances', highlighting the potential impact of this technology in the field of robotics and medicine.
leaderobot.com By Leaderobot Jun 01, 2026 Soft Robotics Medical Robotics Bioinspired Technology Fluid Transport SystemsRSF defines a common language for robot service capability, lifecycle operations, certification pathways, and service-provider networks.
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