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Effect of modulation frequency bandwidth on measurement accuracy and precision for digital Diffuse Optical Spectroscopy (dDOS)

机译:调制频率带宽对数字漫射光谱(dDOS)测量精度和精度的影响

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Near-infrared (NIR) frequency-domain Diffuse Optical Spectroscopy (DOS) is an emerging technology with a growing number of potential clinical applications. In an effort to reduce DOS system complexity and improve portability, we recently demonstrated a direct digital sampling method that utilizes digital signal generation and detection as a replacement for more traditional analog methods. In our technique, a fast analog-to-digital converter (ADC) samples the detected time-domain radio frequency (RF) waveforms at each modulation frequency in a broad-bandwidth sweep (50-300MHz). While we have shown this method provides comparable results to other DOS technologies, the process is data intensive as digital samples must be stored and processed for each modulation frequency and wavelength. We explore here the effect of reducing the modulation frequency bandwidth on the accuracy and precision of extracted optical properties. To accomplish this, the performance of the digital DOS (dDOS) system was compared to a gold standard network analyzer based DOS system. With a starting frequency of 50MHz, the input signal of the dDOS system was swept to 100, 150, 250, or 300MHz in 4MHz increments and results were compared to full 50-300MHz network-analyzer DOS measurements. The average errors in extracted μ_a and μ_s' with dDOS were lowest for the full 50-300MHz sweep (less than 3%) and were within 3.8% for frequency bandwidths as narrow as 50-150MHz. The errors increased to as much as 9.0% when a bandwidth of 50-100MHz was tested. These results demonstrate the possibility for reduced data collection with dDOS without critical compensation of optical property extraction.
机译:近红外(NIR)频域漫射光谱(DOS)是一项新兴技术,具有越来越多的潜在临床应用。为了降低DOS系统的复杂性并提高可移植性,我们最近展示了一种直接数字采样方法,该方法利用数字信号的生成和检测来替代更传统的模拟方法。在我们的技术中,快速模数转换器(ADC)在宽带扫描(50-300MHz)中以每个调制频率对检测到的时域射频(RF)波形进行采样。尽管我们已经证明此方法可以提供与其他DOS技术相当的结果,但是该过程是数据密集型的,因为必须为每个调制频率和波长存储和处理数字样本。我们在这里探讨减小调制频率带宽对提取的光学特性的准确性和精确度的影响。为此,将数字DOS(dDOS)系统的性能与基于金标准网络分析仪的DOS系统进行了比较。起始频率为50MHz时,dDOS系统的输入信号以4MHz的增量扫至100、150、250或300MHz,并将结果与​​50-300MHz的网络分析仪DOS的完整测量结果进行比较。对于整个50-300MHz扫描,使用dDOS提取的μ_a和μ_s'的平均误差最低(小于3%),而对于窄至50-150MHz的频率带宽,其平均误差在3.8%以内。当测试带宽为50-100MHz时,误差高达9.0%。这些结果表明,使用dDOS减少数据收集而无需对光学特性提取进行关键补偿的可能性。

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