Low-cost low-power acceleration of a microwave imaging algorithm for brain stroke monitoring
Academic Article
Publication Date:
2018
abstract:
Microwave imaging can effectively image the evolution of a hemorrhagic stroke thanks to the dielectric contrast between the blood and the surrounding brain tissues. To keep low both the form factor and the power consumption in a bedside device, we propose implementing a microwave imaging algorithm for stroke monitoring in a programmable system-on-chip, in which a simple ARM-based CPU offloads to an FPGA the heavy part of the computation. Compared to a full-software implementation in the ARM CPU, we obtain a 5× speed increase with hardware acceleration without loss in accuracy and precision.
Iris type:
01.01 Articolo in rivista
Keywords:
Biomedical imaging; Embedded systems; Field-programmable gate array; Hardware accelerator; System-on-chip
List of contributors:
Crocco, Lorenzo; Scapaticci, Rosa
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