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Implementing in reconfigurable hardware the control logic of a TTFM ultrasonic system for cardiovascular flow-metering

机译:在可重构硬件中实现TTFM超声波系统的控制逻辑,用于心血管流量计量

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In this work, advanced digital design techniques are used to implement the generation of signals for control and synchronism of an ultrasonic system employed in the flow detection technique known as Transit Time Flow Measurement (TTFM), for the estimation of blood flow in coronary revascularization surgeries. The control logic is implemented using hardware description language and it gives the system reconfigurable features in real-time. Its design is verified and finally, the Intellectual Property Module is obtained. Then, an ultrasonic embedded system to measure blood flow in vessels can be obtained. This work is part of the CYTED multinational project "Ultrasonic and Computational Systems for Cardiovascular Diagnostics" (SUCoDiC), the first Consortium Project of the Ibero-American Program CYTED.
机译:在这项工作中,先进的数字设计技术用于实现所谓的流动时间流量测量(TTFM)中采用的超声波系统的控制和同步的产生,用于估计冠状动脉血运重建手术中的血流量 。 使用硬件描述语言实现控制逻辑,它可以实时提供系统可重新配置功能。 它的设计是验证的,最后,获得了知识产权模块。 然后,可以获得用于测量容器中的血流的超声波嵌入式系统。 这项工作是Cyted跨国项目的一部分"用于心血管诊断的超声波和计算系统" (Sucodic)是伊比利亚美洲计划的第一个组成项目。

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