Liu Qiaoyan, Li Yuejie, Xu Qiujing, Zhao Jincheng, Wang Liwei, Gao Yonghe
Peking Union Medical College, Beijing, 100730.
Zhongguo Yi Liao Qi Xie Za Zhi. 2013 Jan;37(1):1-5.
This investigation introduces GPU (Graphics Processing Unit)- based CUDA (Compute Unified Device Architecture) technology into signal processing of ophthalmic FD-OCT (Fourier-Domain Optical Coherence Tomography) imaging system, can realize parallel data processing, using CUDA to optimize relevant operations and algorithms, in order to solve the technical bottlenecks that currently affect ophthalmic real-time imaging in OCT system. Laboratory results showed that with GPU as a general parallel computing processor, the speed of imaging data processing using GPU+CPU mode is more than dozens times faster than traditional CPU platform based serial computing and imaging mode when executing the same data processing, which reaches the clinical requirements for two dimensional real-time imaging.
本研究将基于图形处理器(GPU)的统一计算设备架构(CUDA)技术引入眼科频域光学相干断层扫描(FD-OCT)成像系统的信号处理中,可实现并行数据处理,利用CUDA对相关操作和算法进行优化,以解决当前影响OCT系统眼科实时成像的技术瓶颈。实验室结果表明,以GPU作为通用并行计算处理器,在执行相同数据处理时,采用GPU+CPU模式的成像数据处理速度比传统基于CPU平台的串行计算和成像模式快数十倍,达到了二维实时成像的临床要求。