Articles liés à FPGA Implementation of Low Cost Holter Monitor Using...

FPGA Implementation of Low Cost Holter Monitor Using Micro-Programming: A New Approach of the Development of Long Time Heart Rate Monitoring Device - Couverture souple

Sarker, Robin; Imtiaz, Masudul Haider; Sumi, Mst.Rumana Aktar

 
9783659333903: FPGA Implementation of Low Cost Holter Monitor Using Micro-Programming: A New Approach of the Development of Long Time Heart Rate Monitoring Device

Synopsis

ECG signal aggregates potentially precise information that could assist the clinicians in making more appropriate & timely decisions in lethal moments. Autonomous system with features of ECG characteristic extraction and heart rate measurement from such electrical response using powerful and advance methodologies are of ultimate interest. VLSI implementation of a portable Holter monitor design is presented in this work considering parallelism, distributed algorithm and re-configurable computing to allocate the DSP implementations. Lacks of bulk production opportunities have forced us to implement it in SmartFushion FPGA prototype board using Verilog micro-coding. A comparative study has been carried out to show the performance, accuracy and cost-effectiveness of the proposed hardware. This could open up a passage for the researchers to afford in lessen the production cost, for physicians and end users to draw attention in their cardiac physiology and to advocate a personal monitoring system.

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Présentation de l'éditeur

ECG signal aggregates potentially precise information that could assist the clinicians in making more appropriate & timely decisions in lethal moments. Autonomous system with features of ECG characteristic extraction and heart rate measurement from such electrical response using powerful and advance methodologies are of ultimate interest. VLSI implementation of a portable Holter monitor design is presented in this work considering parallelism, distributed algorithm and re-configurable computing to allocate the DSP implementations. Lacks of bulk production opportunities have forced us to implement it in SmartFushion FPGA prototype board using Verilog micro-coding. A comparative study has been carried out to show the performance, accuracy and cost-effectiveness of the proposed hardware. This could open up a passage for the researchers to afford in lessen the production cost, for physicians and end users to draw attention in their cardiac physiology and to advocate a personal monitoring system.

Biographie de l'auteur

Robin Sarkar has received BSc in Electronics & Communication Engg(ECE) from KUET, Bangladesh; Masudul Haider Imtiaz & Mst.Rumana Aktar Sumi have received BSc & MSc from the Dept. of Applied Physics, Electronics & Communication Engg,University of Dhaka,Bangladesh. Their research interests are in Instrumentation, Embedded system & VLSI system Design.

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