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Real-time digital design for an optical coherence tomography acquisition and processing system

机译:光学相干层析成像采集和处理系统的实时数字设计

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摘要

We present a real-time, multi-dimensional, digital, optical coherence tomography (OCT) acquisition and imaging system. The system consists of conventional OCT optics, a rapid scanning optical delay (RSOD) line to support fast data acquisition rates, and a high-speed A/D converter for sampling the interference waveforms. A 1M-gate Vierex-II field programmable gate array (FPGA) is designed to perform digital down conversion. This is analogous to demodulating and low-pass filtering the continuous time signal. The system creates in-phase and quadrature-phase components using a tunable quadrature mixer. Multistage polyphase finite impulse response (FIR) filtering and down sampling is used to remove unneeded high frequencies. A floating-point digital signal processor (DSP) computes the magnitude and phase shifts. The data is read by a host machine and displayed on screen at real-time rates commensurate with the data acquisition rate. This system offers flexible acquisition and processing parameters for a wide range of multi-dimensional optical microscopy techniques.
机译:我们提出了一种实时,多维,数字,光学相干断层扫描(OCT)采集和成像系统。该系统包括传统的OCT光学器件,支持快速数据采集速率的快速扫描光学延迟(RSOD)线以及用于对干扰波形进行采样的高速A / D转换器。 1M门Vierex-II现场可编程门阵列(FPGA)设计用于执行数字下变频。这类似于对连续时间信号进行解调和低通滤波。该系统使用可调正交混频器创建同相和正交分量。多级多相有限冲激响应(FIR)滤波和下采样用于去除不需要的高频。浮点数字信号处理器(DSP)计算幅度和相移。数据由主机读取,并以与数据采集速率相对应的实时速率显示在屏幕上。该系统为多种多维光学显微镜技术提供了灵活的采集和处理参数。

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