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Multispectral imaging of tissue absorption and scattering using spatial frequency domain imaging and a computed-tomography imaging spectrometer

机译:使用空间频域成像和计算机断层摄影成像光谱仪对组织吸收和散射进行多光谱成像

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摘要

We present an approach for rapidly and quantitatively mapping tissue absorption and scattering spectra in a wide-field, noncontact imaging geometry by combining multifrequency spatial frequency domain imaging (SFDI) with a computed-tomography imaging spectrometer (CTIS). SFDI overcomes the need to spatially scan a source, and is based on the projection and analysis of periodic structured illumination patterns. CTIS provides a throughput advantage by simultaneously diffracting multiple spectral images onto a single CCD chip to gather spectra at every pixel of the image, thus providing spatial and spectral information in a single snapshot. The spatial-spectral data set was acquired 30 times faster than with our wavelength-scanning liquid crystal tunable filter camera, even though it is not yet optimized for speed. Here we demonstrate that the combined SFDI-CTIS is capable of rapid, multispectral imaging of tissue absorption and scattering in a noncontact, nonscanning platform. The combined system was validated for 36 wavelengths between 650–1000 nm in tissue simulating phantoms over a range of tissue-like absorption and scattering properties. The average percent error for the range of absorption coefficients (μa) was less than 10% from 650–800 nm, and less than 20% from 800–1000 nm. The average percent error in reduced scattering coefficients (μs) was less than 5% from 650–700 nm and less than 3% from 700–1000 nm. The SFDI-CTIS platform was applied to a mouse model of brain injury in order to demonstrate the utility of this approach in characterizing spatially and spectrally varying tissue optical properties.
机译:我们提出了一种通过将多频空间频域成像(SFDI)与计算机断层摄影成像光谱仪(CTIS)相结合的方法,快速,定量地绘制广域非接触成像几何中的组织吸收和散射光谱的方法。 SFDI克服了空间扫描光源的需求,它基于对周期性结构照明图案的投影和分析。 CTIS通过将多个光谱图像同时衍射到单个CCD芯片上以在图像的每个像素处收集光谱来提供吞吐量优势,从而在单个快照中提供空间和光谱信息。尽管尚未针对速度进行优化,但空间光谱数据集的采集速度却比我们的波长扫描液晶可调滤镜相机快30倍。在这里,我们证明了组合的SFDI-CTIS能够在非接触,非扫描平台中对组织吸收和散射进行快速,多光谱成像。该组合系统在模拟体模的一系列组织样吸收和散射特性范围内的650-1000 nm之间的36个波长处得到验证。在650-800 nm范围内,吸收系数(μa)范围的平均百分比误差小于10%,而在800-1000 nm范围内小于20%。减小的散射系数的平均百分比误差(<数学xmlns:mml =“ http://www.w3.org/1998/Math/MathML” id =“ M1” altimg =“ m1.gif” overflow =“ scroll”> μ s ' )较少在650-700 nm范围内小于5%,在700-1000 nm范围内小于3%。 SFDI-CTIS平台应用于脑损伤的小鼠模型,以证明该方法在表征空间和光谱变化的组织光学特性中的实用性。

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