1DCNN-BiLSTM-transformer hypertension risk prediction model based on APW
Yan Peng, Lu Ma, Huiyu Zhou, Jiao Li, Jie Wang

TL;DR
A new model using arterial pressure waveforms improves hypertension risk prediction by capturing both local and global signal patterns.
Contribution
A novel 1D-CNN-BiLSTM-Transformer model for hypertension classification using APW signals with interpretable insights.
Findings
The model outperforms existing methods in accuracy, precision, recall, and F1 score across six Chinese medicine points.
APW signals reflect pathophysiological features linked to gut microbiota dysbiosis.
The model provides interpretable insights for clinical decision-making.
Abstract
Hypertension has a multifactorial etiology. Recent studies have revealed a link between hypertension and gut microbiota dysbiosis. Pulse wave analysis holds significant clinical value for hypertension risk assessment. While research on deep learning models utilizing photoplethysmography (PPG) for hypertension classification has advanced, limitations persist. PPG offers limited richness and accuracy for characterizing blood pressure-related pathological information. In contrast, Arterial Pressure Waveform (APW) provides richer pathological information and exhibit stronger correlations with clinically interpretable features. However, deep learning research using APW for hypertension classification remains limited, as existing studies focus primarily on local feature extraction and neglect global temporal dynamics. To address these challenges, we propose a novel 1D-CNN-BiLSTM-Transformer…
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Taxonomy
TopicsGut microbiota and health · Traditional Chinese Medicine Studies · Artificial Intelligence in Healthcare
