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Robust J-Peak Detection From Ballistocardiogram Using Diffusion-Based Model

delete2026-01-30
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PRE
AI
X
Xinyu Yao
Z
Zhenfeng Cheng
S
Shengsheng Cai
D
Dongyang Xu
J
Jianming Ma
N
Nan Hu
DOI:10.1109/TIM.2026.3659645delete
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Abstract

Abstract

En 中文
Cardiovascular diseases (CVDs) have long represented one of the most significant global health challenges. Due to its noncontact and noninvasive characteristics, the ballistocardiogram (BCG) shows considerable promise for various applications, particularly in heart rate variability (HRV) monitoring. Accurate J-peak detection is a critical prerequisite for effective BCG-based analysis. However, BCG signal quality is affected by multiple factors—including sensor type, measurement posture, and individual differences—posing challenges to reliable J-peak detection. In this article, a diffusion-based J-peak detection method, named the J-Diff model, is proposed. To capture the underlying data distribution and address uncertainties in feature variations, a discriminative model termed the conditional detector is employed to generate initial segmentation results. These results are subsequently refined by a conditional diffusion probabilistic model (CDDPM)-based diffusion refiner that models the data distribution across varying noise levels, thereby yielding more accurate and robust segmentation outcomes. Specifically, the conditional cross transformer (CCT) is introduced to integrate features from the condition detector and the diffusion refiner, thereby reducing the domain gap and directing the network’s attention toward J-peaks. The experimental evaluations were conducted on two BCG datasets collected under different postures and using different sensor types, achieving average precision of 88.02% and 97.32%, recall of 86.79% and 97.10%, and $F1$ -scores of 0.874 and 0.972, respectively. Correlation analysis revealed significantly high correlations between all HRV indices derived from BCG and those obtained from the electrocardiogram (ECG). These results highlight the effectiveness of applying the proposed J-Diff model in improving the reliability and generalization of BCG measurement systems.
Keywords:
Ballistocardiogram (BCG)
conditional cross transformer (CCT)
diffusion model
J-peak detection

Journal

IEEE Transactions on Instrumentation and Measurement cover
IEEE Transactions on Instrumentation and Measurement
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5.9
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Citations:
5.8W

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huzhou university
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soochow university
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zhejiang university
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