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Continuous real-time photoacoustic demodulation via field programmable gate array for dynamic imaging of zebrafish cardiac cycle

机译:通过现场可编程门阵列进行连续实时光声解调,用于斑马鱼心动周期的动态成像

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A four dimensional data set of the cardiac cycle of a zebrafish embryo was acquired using postacquisition synchronization of real time photoacoustic b-scans. Utilizing an off-axis photoacoustic microscopy (OA-PAM) setup, we have expanded upon our previous work with OA-PAM to develop a system that can sustain 100 kHz line rates while demodulating the bipolar photoacoustic signal in real-time. Real-time processing was accomplished by quadrature demodulation on a Field Programmable Gate Array (FPGA) in line with the signal digitizer. Simulated data acquisition verified the system is capable of real-time processing up to a line rate of 1 MHz. Galvanometer-scanning of the excitation laser inside the focus of the ultrasonic transducer enables real data acquisition of a 200 by 200 by 200 pixel, volumetric data set across a 2 millimeter field of view at a rate of 2.5 Hz.
机译:使用实时光声b扫描的采集后同步获取斑马鱼胚胎心动周期的四维数据集。利用离轴光声显微镜(OA-PAM)设置,我们在先前与OA-PAM的合作基础上进行了扩展,以开发一种能够维持100 kHz线速并实时解调双极光声信号的系统。实时处理是通过在现场可编程门阵列(FPGA)上与信号数字化仪相连进行正交解调来完成的。模拟数据采集证明该系统能够实时处理高达1 MHz的线速。在超声换能器的焦点内对激发激光器进行振镜扫描,能够以2.5 Hz的速率在2毫米的视场上采集200 x 200 x 200像素的体积数据。

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