An all-analog biosensor prototype uses AJSCC to combine microfluidic and physiological signals into one wireless channel with claimed high accuracy.
Energy-efficient analog sensing for large-scale, high-density persistent wireless monitoring
2 Pith papers cite this work. Polarity classification is still indexing.
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The paper proposes a low-power wearable sensor design for concurrent molecular biomarker and physiological signal monitoring using microfluidic biosensing, electrical measurements, and all-analog AJSCC compression.
citing papers explorer
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Towards Wireless Health Monitoring via Analog Signal Compression based Biosensing Platform
An all-analog biosensor prototype uses AJSCC to combine microfluidic and physiological signals into one wireless channel with claimed high accuracy.
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Towards Low-power Wearable Wireless Sensors for Molecular Biomarker and Physiological Signal Monitoring
The paper proposes a low-power wearable sensor design for concurrent molecular biomarker and physiological signal monitoring using microfluidic biosensing, electrical measurements, and all-analog AJSCC compression.