arXiv:2508.02274cs.HCcs.LG2025-08

用雷达无接触监测心律失常,突破信号不稳难题

mCardiacDx: Radar-Driven Contactless Monitoring and Diagnosis of Arrhythmia

  • 通过精确定位技术应对心律失常患者信号空间漂移
  • 构建编码器-解码器模型重建心搏波形,提升诊断准确率
  • 适用于健康与患者群体,适合远程心电监控场景

心律失常是一种常见心脏疾病,若不及时干预可能引发严重并发症。虽然持续监测对早期诊断至关重要,但传统心电图及可穿戴设备依赖专业人员且存在接触不适。现有无接触监测多针对健康人群,难以处理心律失常患者反射信号中的空间不稳定与时间不一致问题。本文提出mCardiacDx,一种基于雷达的无接触系统,可精准分析反射信号并重建心搏波形,实现心律失常监测与诊断。核心贡献包括一种新型精确定位(PTL)技术,可在空间扰动下定位信号;以及一个编码器-解码器模型,有效解决时间不一致性问题。在包含健康人群与心律失常患者的大型数据集上评估显示,mCardiacDx与PTL均优于现有先进方法,在两类人群中均表现更优。

原文摘要 · Abstract (English)

Arrhythmia is a common cardiac condition that can precipitate severe complications without timely intervention. While continuous monitoring is essential for timely diagnosis, conventional approaches such as electrocardiogram and wearable devices are constrained by their reliance on specialized medical expertise and patient discomfort from their contact nature. Existing contactless monitoring, primarily designed for healthy subjects, face significant challenges when analyzing reflected signals from arrhythmia patients due to disrupted spatial stability and temporal consistency. In this paper, we introduce mCardiacDx, a radar-driven contactless system that accurately analyzes reflected signals and reconstructs heart pulse waveforms for arrhythmia monitoring and diagnosis. The key contributions of our work include a novel precise target localization (PTL) technique that locates reflected signals despite spatial disruptions, and an encoder-decoder model that transforms these signals into HPWs, addressing temporal inconsistencies. Our evaluation on a large dataset of healthy subjects and arrhythmia patients shows that both mCardiacDx and PTL outperform state-of-the-art approach in arrhythmia monitoring and diagnosis, also demonstrating improved performance in healthy subjects.

无接触监测心律失常雷达传感信号重建

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