硬件加速分水岭超声心动图图像分割

D. Drop, Z. Latala, J. Kasperek, R. Patury, P. Rajda, J. Sadowski, L. Szydlowski, L. Wojnar
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引用次数: 1

摘要

提出了一种硬件加速左心室检测算法。基于标记控制分水岭分割方法,算法核心按顺序工作:将给定帧的检测结果作为分割标记处理下一帧。完整的算法用Matlab编写。它执行20多个基本运算,计算一部电影需要几十分钟。由于这在临床应用中是一个严重的缺点,因此提出了硬件加速。作者搭建了一个基于PC机的实验系统,该系统配备了数据转换帧采集器和Alpha-Data ADM-XRC-II板和高容量Virtex II现场可编程门阵列。由于FPGA Virtex II器件中计算并发的可能性,特定算法阶段的硬件实现显示出显著的加速
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Hardware accelerated watershed based echocardiographic image segmentation
The proposed poster presents a hardware accelerated left ventricle detection algorithm. Based on marker controlled watershed segmentation method, the algorithm core works sequentially: detection result from a given frame is taken as the segmentation marker to process the next frame. The complete algorithm is written in Matlab. It performs more then 20 elementary operations and needs tens of minutes to compute one movie. As this is a serious disadvantage in clinical application, hardware acceleration has been proposed. Authors built an experimental PC based system equipped with data translation frame-grabber and Alpha-Data ADM-XRC-II board with high capacity Virtex II field programmable gate array. Hardware implementation of particular algorithm stages shows significant speedup due to the possibility of computation concurrency in FPGA Virtex II device
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