首页> 外文会议>Conference on Biomedical Applications of Light Scattering; 20080119-21; San Jose,CA(US) >Measuring neoplastic transformation in the hamster cheek pouch using Fourier domain low coherence interferometry
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Measuring neoplastic transformation in the hamster cheek pouch using Fourier domain low coherence interferometry

机译:使用傅里叶域低相干干涉法测量仓鼠脸颊袋中的赘生性转化

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Fourier Domain Low Coherence Interferometry (fLCI) is a promising technique which combines the depth resolution of low coherence interferometry with the sensitivity of light scattering spectroscopy for probing the health of epithelial tissue layers. Our new fLCI system configuration utilizes a white light Xe arc lamp source and a 4-f interferometer which re-images light scattered from the sample onto the detection plane. The system employs an imaging spectrometer at the detection plane to acquire depth resolved profiles from 252 adjacent spatial points without the need for any scanning. The limited spatial coherence of the light source requires the resolution of adjacent spatial points for the generation of depth information. Depth-resolved spectral information is recovered by performing a short-time Fourier transform on the detected spectra, similar to spectroscopic optical coherence tomography. Wavelength dependent variations in scattering intensity are analyzed as a function of depth to obtain information about the neoplastic transformation of the probed cells. Previous studies have demonstrated fLCI as an excellent technique for probing the scatterer morphology of simple phantoms and of in vitro cancer cell monolayers. We now seek to assess the ability of the new fLCI system to measure the health of subsurface tissue layers using the hamster cheek pouch model. Seven hamsters will have one cheek pouch treated with the known carcinogen DMBA. At the conclusion of the 24 week treatment period the animals will be anesthetized and the cheek pouches will be extracted. We will use the fLCI optical system to measure the neoplastic transformation of the in situ subsurface tissue layers in both the normal and DMBA-treated cheek pouches. Traditional histological analysis will be used to verify the fLCI measurements. We expect our results to establish the feasibility of fLCI to distinguish between healthy and dysplastic epithelial tissues in the hamster cheek pouch.
机译:傅里叶域低相干干涉术(fLCI)是一种有前途的技术,将低相干干涉术的深度分辨率与光散射光谱法的灵敏度相结合,可用于探测上皮组织层的健康状况。我们的新fLCI系统配置利用白光Xe弧光灯光源和4-f干涉仪,将从样品散射的光重新成像到检测平面上。该系统在检测平面上使用成像光谱仪,无需任何扫描即可从252个相邻空间点获取深度解析轮廓。光源的空间相干性有限,需要解析相邻空间点才能生成深度信息。通过对检测到的光谱执行短时傅立叶变换,可以恢复深度分辨的光谱信息,类似于光谱光学相干断层扫描。分析波长随散射强度的变化作为深度的函数,以获得有关所探测细胞的肿瘤转化的信息。先前的研究表明,fLCI是探测简单体模和体外癌细胞单层散射体形态的出色技术。我们现在寻求评估使用仓鼠脸颊袋模型的新fLCI系统测量地下组织薄层健康的能力。七个仓鼠将有一个用已知的致癌物质DMBA处理过的脸颊袋。在24周治疗期结束时,将对动物进行麻醉并提取颊袋。我们将使用fLCI光学系统测量正常脸颊袋和DMBA处理过的颊袋中原位表面下层组织的赘生物转化。传统的组织学分析将用于验证fLCI测量。我们期望我们的结果能够建立fLCI区分仓鼠脸颊袋中健康和发育不良的上皮组织的可行性。

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