Core Viewpoint - The research team from the Chinese Academy of Sciences has developed an autonomous robotic system for ophthalmic microsurgery, which significantly enhances the precision, safety, and stability of eye surgeries, minimizing damage to ocular tissues [1][2]. Group 1: Technological Advancements - The autonomous robotic system has completed clinical feasibility validation and is expected to improve surgical safety levels and shorten the training period for doctors [1]. - The system utilizes multi-view spatial fusion to create a dynamically updated three-dimensional map of the eye, achieving comprehensive perception of the surgical area [1]. - Multi-sensor data fusion technology allows for precise positioning of surgical instruments across different scales, ensuring accuracy and safety in surgical trajectories [1]. Group 2: Performance Metrics - Experimental results show a 100% success rate in injection across various eye models, with an average positioning error reduced by approximately 80% compared to manual operations by doctors [1]. - Even when compared to robot-assisted surgeries performed by doctors, the error margin is reduced by about 55%, demonstrating superior precision and safety [1]. Group 3: Future Applications - The system is expected to pave a new technological path for the autonomy of ophthalmic surgeries, promoting the development of intelligent and precise eye treatments [2]. - Future applications may include remote diagnosis, emergency rescue, and even space medicine, indicating a broad scope of potential uses [2].
【科技日报】眼科手术自主机器人系统研发成功