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1.
IEEE Trans Biomed Circuits Syst ; 10(2): 412-23, 2016 Apr.
Artigo em Inglês | MEDLINE | ID: mdl-26954842

RESUMO

In this paper, we present a novel system-on-chip (SOC) solution for a portable ultrasound imaging system (PUS) for point-of-care applications. The PUS-SOC includes all of the signal processing modules (i.e., the transmit and dynamic receive beamformer modules, mid- and back-end processors, and color Doppler processors) as well as an efficient architecture for hardware-based imaging methods (e.g., dynamic delay calculation, multi-beamforming, and coded excitation and compression). The PUS-SOC was fabricated using a UMC 130-nm NAND process and has 16.8 GFLOPS of computing power with a total equivalent gate count of 12.1 million, which is comparable to a Pentium-4 CPU. The size and power consumption of the PUS-SOC are 27×27 mm(2) and 1.2 W, respectively. Based on the PUS-SOC, a prototype hand-held US imaging system was implemented. Phantom experiments demonstrated that the PUS-SOC can provide appropriate image quality for point-of-care applications with a compact PDA size ( 200×120×45 mm(3)) and 3 hours of battery life.


Assuntos
Sistemas Automatizados de Assistência Junto ao Leito , Ultrassonografia/instrumentação , Algoritmos , Compressão de Dados , Desenho de Equipamento , Humanos , Interpretação de Imagem Assistida por Computador , Dispositivos Lab-On-A-Chip
2.
Artigo em Inglês | MEDLINE | ID: mdl-22828834

RESUMO

We present a cost-effective portable ultrasound system based on a single field-programmable gate array (FPGA) for point-of-care applications. In the portable ultrasound system developed, all the ultrasound signal and image processing modules, including an effective 32-channel receive beamformer with pseudo-dynamic focusing, are embedded in an FPGA chip. For overall system control, a mobile processor running Linux at 667 MHz is used. The scan-converted ultrasound image data from the FPGA are directly transferred to the system controller via external direct memory access without a video processing unit. The potable ultrasound system developed can provide real-time B-mode imaging with a maximum frame rate of 30, and it has a battery life of approximately 1.5 h. These results indicate that the single FPGA-based portable ultrasound system developed is able to meet the processing requirements in medical ultrasound imaging while providing improved flexibility for adapting to emerging POC applications.


Assuntos
Interpretação de Imagem Assistida por Computador/instrumentação , Armazenamento e Recuperação da Informação/métodos , Sistemas Automatizados de Assistência Junto ao Leito , Processamento de Sinais Assistido por Computador/instrumentação , Ultrassonografia/instrumentação , Desenho Assistido por Computador , Desenho de Equipamento , Análise de Falha de Equipamento , Aumento da Imagem/instrumentação , Miniaturização , Reprodutibilidade dos Testes , Sensibilidade e Especificidade
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