基于血氧仪的血氧饱和度监测预警系统及方法

By analyzing historical wristband data to optimize the pulse oximeter's measurement location and calculate the recovery speed of blood oxygen fluctuations, and dynamically adjusting the warning range, the problem of high false alarm rate in traditional blood oxygen monitoring systems due to individual differences and environmental changes has been solved, achieving personalized, real-time blood oxygen monitoring and warning.

CN120938431BActive Publication Date: 2026-07-17SHENZHEN MED LINKET MEDICAL ELECTRONICS CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
SHENZHEN MED LINKET MEDICAL ELECTRONICS CO LTD
Filing Date
2025-10-11
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Traditional blood oxygen monitoring systems cannot adapt to individual physiological differences and dynamic environmental changes, resulting in a high false alarm rate. They cannot accurately capture blood oxygen fluctuation trends during exercise recovery, and the warning timing is delayed. Furthermore, they cannot establish a personalized blood oxygen recovery baseline when the condition changes, leading to unreasonable warning interval settings.

Method used

By analyzing historical wristband data, the system determines the user's status information during exercise and rest, optimizes the pulse oximeter measurement location, calculates the recovery rate of blood oxygen fluctuations, simulates the recovery value of blood oxygen fluctuations, limits the range of blood oxygen change trends, and dynamically adjusts the warning range based on this to trigger abnormal blood oxygen warnings.

Benefits of technology

It enables personalized, real-time blood oxygen monitoring, reduces false alarm rates, improves the accuracy and sensitivity of blood oxygen monitoring, and ensures timely early warning when physiological states change.

✦ Generated by Eureka AI based on patent content.

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Abstract

本发明涉及血氧监测预警技术领域,尤其涉及一种基于血氧仪的血氧饱和度监测预警系统及方法。所述方法包括以下步骤:通过分析用户运动和静息状态下的历史手环数据,确定两种状态下的生理信息,并基于测量位置差异筛选出最适合血氧仪检测的身体部位进行数据采集,接着计算用户血氧波动的恢复速度,据此模拟血氧波动范围,从而确定血氧变化的合理区间,最终以该区间作为预警基准,当实时血氧数据超出设定范围时触发异常警报,实现精准化、动态化的血氧监测与健康管理。本发明通过分析运动和静息数据优化血氧测量位置,结合波动规律建立动态预警区间,实现精准的血氧异常监测及预警。
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