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20182022
most citedRobust and Energy-efficient PPG-based Heart-Rate Monitoring

24 citations · 39 across the 7 of their papers we have counts for

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8 papers · 1 filter

eess.SP2022

Energy-Efficient Tree-Based EEG Artifact Detection

Thorir Mar Ingolfsson, Andrea Cossettini, Simone Benatti +1

In the context of epilepsy monitoring, EEG artifacts are often mistaken for seizures due to their morphological similarity in both amplitude and frequency, making seizure detection…

eess.SP202224 cited

Robust and Energy-efficient PPG-based Heart-Rate Monitoring

Matteo Risso, Alessio Burrello, Daniele Jahier Pagliari +4

A wrist-worn PPG sensor coupled with a lightweight algorithm can run on a MCU to enable non-invasive and comfortable monitoring, but ensuring robust PPG-based heart-rate monitoring…

eess.SP20221 cited

Bioformers: Embedding Transformers for Ultra-Low Power sEMG-based Gesture Recognition

Alessio Burrello, Francesco Bianco Morghet, Moritz Scherer +5

Human-machine interaction is gaining traction in rehabilitation tasks, such as controlling prosthetic hands or robotic arms. Gesture recognition exploiting surface electromyographi…

eess.SP20222 cited

Q-PPG: Energy-Efficient PPG-based Heart Rate Monitoring on Wearable Devices

Alessio Burrello, Daniele Jahier Pagliari, Matteo Risso +4

Hearth Rate (HR) monitoring is increasingly performed in wrist-worn devices using low-cost photoplethysmography (PPG) sensors. However, Motion Artifacts (MAs) caused by movements o…

eess.SP2022

Embedding Temporal Convolutional Networks for Energy-Efficient PPG-Based Heart Rate Monitoring

Alessio Burrello, Daniele Jahier Pagliari, Pierangelo Maria Rapa +6

Photoplethysmography (PPG) sensors allow for non-invasive and comfortable heart-rate (HR) monitoring, suitable for compact wrist-worn devices. Unfortunately, Motion Artifacts (MAs)…

eess.SP20219 cited

A Fully-Integrated 5mW, 0.8Gbps Energy-Efficient Chip-to-Chip Data Link for Ultra-Low-Power IoT End-Nodes in 65-nm CMOS

Hayate Okuhara, Ahmed Elnaqib, Martino Dazzi +4

The increasing complexity of Internet-of-Things (IoT) applications and near-sensor processing algorithms is pushing the computational power of low-power, battery-operated end-node…