从外围手指衍生的脉冲波形到大动脉压力波形特征:一种通用转移函数的应用
概括
大动脉压力特征可以从外围光学 (PPG) 和压力波形中提取出来. 佩纳兹的PPG技术对可穿戴设备有希望,但指尖PPG需要进一步优化以进行准确的心血管评估.
科学领域:
- 心血管生理学心血管生理学
- 生物医学工程 生物医学工程
- 可穿戴健康技术的可穿戴健康技术
背景情况:
- 大动脉 (中心) 压力特征与心血管并发症有关.
- 这些特征可以通过算法从外围动脉波形中推导出来.
- 传统上,使用的是压力波形 (压力计,振荡计),而不是像可穿戴设备中常见的光学传感器 (PPG).
研究的目的:
- 为了研究从外围光多聚光学 (PPG) 波形中提取大动脉特征.
- 为了比较来自不同外围动脉波形传感器方式的异动脉特征,使用相同的传输功能.
主要方法:
- 在29名参与者中测量了放射性度计 (参考),手指体积紧PPG (Peňáz) 和手指尖PPG波形.
- 使用转移函数将获得的波形转换为大动脉压力波形.
- 提取波形特征并使用相关图和布兰德-阿尔特曼分析进行比较.
主要成果:
- 来自Peňáz PPG技术的大动脉压力特征与放射性度学特征相似.
- 从指尖PPG波形中提取的大动脉特征与放射性度学相比,表现出更大的可变性.
结论:
- 大动脉压力波形特征提供了宝贵的血液动力学信息,适合于可穿戴健康设备.
- 基于PPG的可穿戴设备需要进一步开发和优化独特的传输功能,以准确地表示心血管评估的大动脉压力.
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