A geriatric hip fracture operating bed and a method of using the same

The elderly hip fracture surgery bed, which incorporates bionics and the principle of dynamic decompression in zones, combined with an intelligent positioning management module and AI algorithms, solves the problems of poor positioning stability, high risk of pressure sores and nerve damage, and low surgical preparation efficiency in elderly hip fracture surgery, achieving rapid, accurate, and safe positioning management.

CN122398571APending Publication Date: 2026-07-17潮州市人民医院(潮州医院)
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
潮州市人民医院(潮州医院)
Filing Date
2026-06-08
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing technologies for hip fracture surgery in the elderly suffer from problems such as poor positional stability, high risk of pressure sores and nerve damage, low surgical preparation efficiency, and contradictions between positional fixation and fluoroscopy, and cannot provide a proactive, intelligent, and systematic overall solution.

Method used

An operating table for hip fractures in the elderly was designed, which adopts a biomimetic saddle-shaped hip support, a linked lumbar support, a lower limb support with active nerve avoidance, and an AI central control unit. It can be quickly assembled and disassembled through electromagnetic locks, and the AI ​​algorithm automatically generates the optimal positioning plan. During the operation, dynamic compensation is achieved through pressure monitoring and fluoroscopic navigation.

Benefits of technology

It achieves active positional stability, significantly reduces the risk of fracture displacement and nerve damage, shortens surgical preparation time, reduces anesthesia risks and medical costs, and is in line with the concept of Enhanced Recovery After Surgery (ERAS).

✦ Generated by Eureka AI based on patent content.

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Abstract

本发明公开了一种老年髋部骨折手术床及其使用方法,采用座体与可拆卸智能体位管理模块协同的结构,模块包括透视兼容主体支架、三维包裹式仿生马鞍形髋部支撑、带主动腓总神经避让的下肢支撑、随髋部高度联动的腰部支撑,以及集成AI算法的中央控制单元;通过电磁锁扣式固定臂实现模块快速装拆,AI算法基于患者参数生成兼顾透视效率的最优体位方案,术中通过压力监测、透视导航校准实现动态补偿。本发明可将骨折模型位移量减少90%以上,腓总神经峰值压力降低85%以上,手术准备时间缩短70%以上,符合加速康复外科理念。
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