Title :
A 20µW intra-cardiac signal-processing IC with 82dB bio-impedance measurement dynamic range and analog feature extraction for ventricular fibrillation detection
Author :
Sunyoung Kim ; Long Yan ; Mitra, Subhasish ; Osawa, Masato ; Harada, Y. ; Tamiya, Kosei ; Van Hoof, Chris ; Yazicioglu, Refet Firat
Author_Institution :
Imec, Leuven, Belgium
Abstract :
The accurate recognition of multiple intra-cardiac signals is becoming more and more important for Cardiac Resynchronization Therapy (CRT) and for the analysis of the intra-thoracic fluid status [1, 2]. Robust and accurate Heart-Rate (HR) monitoring at the right/left ventricles and the right atrium is essential for an implantable cardiac pacemaker system (Fig. 16.9.1), and ultra-low power consumption is needed. In addition, an accurate motion sensor and thoracic impedance measurement can acquire valuable additional information in clinical research on the intra-cardiac rhythm analysis. As shown in Fig. 16.9.2, our proposed Analog Signal Processor (ASP) IC consists of 3 power-efficient intra-cardiac signal readout channels. Each channel is equipped with a low-power QRS feature extraction unit and an ECG processor in parallel. The ASP also provides an ultra-low-power readout circuit for an external accelerometer (RA). In addition, two quadrature bio-impedance readout channels are used together with a digitized sinusoidal current generator in order to implement an accurate and wide dynamic range bio-impedance measurement. The ASP improves the state of the art by integrating a power-efficient means of QRS feature extraction for detecting Ventricular Fibrillation (VF), and a wide dynamic range bio-impedance readout.
Keywords :
accelerometers; analogue integrated circuits; biosensors; cardiology; defibrillators; electric impedance measurement; feature extraction; low-power electronics; medical signal processing; pacemakers; readout electronics; waveform generators; ASP IC; CRT; ECG processor; HR monitoring; RA; VF; accelerometer; analog feature extraction; analog signal processor; bioimpedance measurement dynamic range; cardiac resynchronization therapy; clinical research; digitized sinusoidal current generator; dynamic range bioimpedance measurement; heart-rate monitoring; implantable cardiac pacemaker system; intra-cardiac signal-processing IC; intra-thoracic fluid status; intracardiac rhythm analysis; intracardiac signal recognition; low-power QRS feature extraction unit; motion sensor; power 20 muW; power-efficient intra-cardiac signal readout channel; quadrature bioimpedance readout channel; right/left ventricle; thoracic impedance measurement; ultra-low power consumption; ultra-low-power readout circuit; ventricular fibrillation detection; wide dynamic range bio-impedance readout; Biomedical measurement; Current measurement; Demodulation; Feature extraction; Impedance; Impedance measurement; Integrated circuits;
Conference_Titel :
Solid-State Circuits Conference Digest of Technical Papers (ISSCC), 2013 IEEE International
Conference_Location :
San Francisco, CA
Print_ISBN :
978-1-4673-4515-6
DOI :
10.1109/ISSCC.2013.6487745