arXiv:2510.05296cs.CVeess.IV2025-10被引 1

提出全身皮肤分割新方法,提升远距离心率监测在运动和光照变化下的稳定性。

SkinMap: Weighted Full-Body Skin Segmentation for Robust Remote Photoplethysmography

  • 基于加权策略精准定位全身可见皮肤区域,抑制嘴眼发丝干扰
  • 在说话和头部转动等挑战场景下保持心率预测误差低于基准方法
  • 支持多种肤色识别,适合真实环境中的远程健康监测应用

远距离光电容积脉搏波图(rPPG)是一种仅通过摄像头捕捉人体皮肤颜色变化来监测心率与生命体征的低成本无接触技术,适用于远程医疗、情绪分析和智能驾舱等场景。现有方法对光照与运动敏感,其无监督流程需先从视频中提取皮肤区域以获取rPPG信号。本文提出SkinMap,一种新型全身体表皮肤分割方法,优先识别有效皮肤区域,可覆盖全身各部位,有效抑制口部、眼部及头发等干扰区域。模型在公开数据集上评估,并构建了新数据集SYNC-rPPG以更贴近真实使用条件。实验表明,在说话、头部旋转等复杂情况下,该方法仍能稳定捕捉心跳信号,且预测心率均方误差(MAE)显著优于其他方法;同时在多种肤色样本中保持高精度,具备实际部署潜力。

原文摘要 · Abstract (English)

Remote photoplethysmography (rPPG) is an innovative method for monitoring heart rate and vital signs by using a simple camera to record a person, as long as any part of their skin is visible. This low-cost, contactless approach helps in remote patient monitoring, emotion analysis, smart vehicle utilization, and more. Over the years, various techniques have been proposed to improve the accuracy of this technology, especially given its sensitivity to lighting and movement. In the unsupervised pipeline, it is necessary to first select skin regions from the video to extract the rPPG signal from the skin color changes. We introduce a novel skin segmentation technique that prioritizes skin regions to enhance the quality of the extracted signal. It can detect areas of skin all over the body, making it more resistant to movement, while removing areas such as the mouth, eyes, and hair that may cause interference. Our model is evaluated on publicly available datasets, and we also present a new dataset, called SYNC-rPPG, to better represent real-world conditions. The results indicate that our model demonstrates a prior ability to capture heartbeats in challenging conditions, such as talking and head rotation, and maintain the mean absolute error (MAE) between predicted and actual heart rates, while other methods fail to do so. In addition, we demonstrate high accuracy in detecting a diverse range of skin tones, making this technique a promising option for real-world applications.

rPPG皮肤分割心率监测无接触传感

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