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Dynamic Optical Tomographic Imager with Optimized Digital Lock-In Filtering

机译:动态光学断层成像仪,具有优化的数字锁定滤波

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摘要

We describe a new dynamic optical tomography system that is, unlike currently available analog instrumentation, based on digital data-acquisition and filtering techniques. At the heart of this continuous wave instrument is a digital signal processor (DSP) that collects, collates, processes, and filters the digitized data set. A digital lock-in filter that has been designed for this particular application maximizes measurement fidelity. The synchronously-timed processes are controlled by a complex programmable logic device (CPLD) that is also used in conjunction with the DSP to orchestrate data flow. Real-time data rates as high as 140Hz can be achieved. The operation of the system is implemented through a graphical user interface designed with LabVIEW software, Performance analysis shows very low system noise (~600fW RMS noise equivalent power), excellent signal precision ( < 0.04% - 0.2%) and long-term system stability ( < 1% over 40 min). A large dynamic range (~195dB) accommodates a wide scope of measurement geometries and tissue types. First experiments on tissue phantoms show that dynamic behavior is accurately captured and spatial location can be correctly tracked using this system.
机译:我们描述了一种新的动态光学层析成像系统,该系统不同于当前可用的模拟仪器,它是基于数字数据采集和滤波技术的。这种连续波仪器的核心是一个数字信号处理器(DSP),它可以收集,整理,处理和过滤数字化数据集。专为该特定应用而设计的数字锁定滤波器可最大程度地提高测量保真度。同步定时过程由复杂的可编程逻辑器件(CPLD)控制,该器件也与DSP结合使用以协调数据流。可以实现高达140Hz的实时数据速率。系统的运行是通过使用LabVIEW软件设计的图形用户界面实现的,性能分析显示系统噪声极低(〜600fW RMS噪声等效功率),出色的信号精度(<0.04%-0.2%)和长期的系统稳定性(在40分钟内<1%)。大动态范围(〜195dB)可适应各种测量几何形状和组织类型。在组织体模上的首次实验表明,使用该系统可以准确捕获动态行为,并且可以正确跟踪空间位置。

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