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Automated high-throughput assessment of prostate biopsy tissue using infrared spectroscopic chemical imaging

机译:使用红外光谱化学成像自动进行前列腺活检组织的高通量评估

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Fourier transform infrared (FT-IR) chemical imaging has been demonstrated as a promising technique to complement histopathological assessment of biomedical tissue samples. Current histopathology practice involves preparing thin tissue sections and staining them using hematoxylin and eosin (H&E) after which a histopathologist manually assess the tissue architecture under a visible microscope. Studies have shown that there is disagreement between operators viewing the same tissue suggesting that a complementary technique for verification could improve the robustness of the evaluation, and improve patient care. FT-IR chemical imaging allows the spatial distribution of chemistry to be rapidly imaged at a high (diffraction-limited) spatial resolution where each pixel represents an area of 5.5 × 5.5 μm~2 and contains a full infrared spectrum providing a chemical fingerprint which studies have shown contains the diagnostic potential to discriminate between different cell-types, and even the benign or malignant state of prostatic epithelial cells. We report a label-free (i.e. no chemical de-waxing, or staining) method of imaging large pieces of prostate tissue (typically 1 cm× 2 cm) in tens of minutes (at a rate of 0.704 × 0.704 mm~2 every 14.5 s) yielding images containing millions of spectra. Due to refractive index matching between sample and surrounding paraffin, minimal signal processing is required to recover spectra with their natural profile as opposed to harsh baseline correction methods, paving the way for future quantitative analysis of biochemical signatures. The quality of the spectral information is demonstrated by building and testing an automated cell-type classifier based upon spectral features.
机译:傅里叶变换红外(FT-IR)化学成像已被证明是对生物医学组织样品的组织病理学评估补充的有希望的技术。目前的组织病理学实践涉及使用血管基和曙红(H&E)制备薄的组织切片并染色它们,之后组织医师在可见显微镜下手动评估组织架构。研究表明,操作人员之间存在分歧,观看相同的组织,表明验证的互补技术可以改善评估的鲁棒性,并改善患者护理。 FT-IR化学成像允许在高(衍射限制)空间分辨率的高(衍射限制)空间分辨率下迅速成像的空间分布,其中每个像素表示面积为5.5×5.5μm〜2并且包含完全红外光谱,提供了研究的化学指纹已经显示含有鉴别不同细胞类型之间的诊断潜力,甚至是前列腺上皮细胞的良性或恶性肿瘤。我们报告了一种无标记的(即没有化学脱蜡或染色)的成像大块前列腺组织(通常为1cm×2cm)的方法(通常为0.704×0.704mm〜2的速度。每14.5 s)产生包含数百万光谱的图像。由于样品和周围石蜡之间的折射率匹配,需要最小的信号处理来恢复与其自然曲线的谱,而不是苛刻的基线校正方法,为未来的生物化学签名进行定量分析。通过基于频谱特征构建和测试自动细胞型分类器来证明光谱信息的质量。

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