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Elastic scattering spectroscopy of coagulated brain tissues

机译:凝固脑组织的弹性散射光谱

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The goal of this study was to differentiate the parts of lamb brain according to elastic scattering spectroscopy and detect the optical alterations due to coagulation. Cells and tissues are not uniform and have complex structures and shapes. They can be referred to as scattering particles. The process of scattering depends on the light wavelength and on the scattering medium properties; especially on the size and the density of the medium. When elastic scattering spectroscopy (ESS) is employed, the morphological alterations of tissues can be detected using spectral measurements of the elastic scattered light over a wide range of wavelengths. In this study firstly, the slopes of ESS spectra were used to differentiate the parts of lamb brains (brainstem, cerebellum, gray matter, white matter) in vitro in the range of 450 - 750 nm. Secondly, tissues were coagulated at different temperatures (45, 60, and 80℃) and ESS spectra were taken from native and coagulated tissues. It was observed that as the coagulation temperature increased, the slope of the elastic scattering spectra decreased. Thus, optical properties of tissues were changed with respect to the change in nuclear to cytoplasmic ratio due to the water loss. Results showed that the slopes of ESS spectra in the visible range revealed valuable information about the morphological changes caused by coagulation.
机译:这项研究的目的是根据弹性散射光谱法区分羔羊大脑的各个部分,并检测由于凝结而引起的光学改变。细胞和组织不均匀,具有复杂的结构和形状。它们可以被称为散射粒子。散射的过程取决于光的波长和散射介质的性质。特别是在介质的尺寸和密度上。当使用弹性散射光谱法(ESS)时,可以使用在宽波长范围内的弹性散射光的光谱测量结果来检测组织的形态变化。在本研究中,首先,在450 nm至750 nm的范围内,使用ESS光谱的斜率来区分羊脑的各个部分(脑干,小脑,灰质,白质)。其次,在不同温度(45、60和80℃)下凝固组织,并从天然和凝固的组织获取ESS光谱。观察到随着凝结温度的升高,弹性散射光谱的斜率减小。因此,由于水的流失,组织的光学特性相对于核质比的变化而变化。结果表明,ESS光谱在可见光范围内的斜率揭示了有关凝结引起的形态变化的有价值的信息。

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