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Measurement method of optical properties of ex vivo biological tissues of rats in the near-infrared range

机译:近红外范围大鼠exVivo生物组织光学性质的测量方法

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摘要

An optical fiber-based supercontinuum setup and a custom-made spectrophotometer that can measure spectra from 1100 to 2300 nm, are used to describe attenuation properties from different ex vivo rat tissues. Our method is able to differentiate between scattering and absorption coefficients in biological tissues. Theoretical assumptions combined with experimental measurements demonstrate that, in this infrared range, tissue attenuation and absorption can be accurately measured, and scattering can be described as the difference between both magnitudes. Attenuation, absorption, and scattering spectral coefficients of heart, brain, spleen, retina, and kidney are given by applying these theoretical and experimental methods. Light through these tissues is affected by high scattering, resulting in multiple absorption events, and longer wavelengths should be used to obtain lower attenuation values. It can be observed that the absorption coefficient has a similar behavior in the samples under study, with two main zones of absorption due to the water absorption bands at 1450 and 1950 nm, and with different absolute absorption values depending on the constituents of each tissue. The scattering coefficient can be determined, showing slight differences between retina and brain samples, and among heart, spleen and kidney tissues. (C) 2020 Optical Society of America
机译:一种基于光纤的超连续设置和可以测量1100至2300nm的光谱的定制分光光度计,用于描述来自不同离体大鼠组织的衰减特性。我们的方法能够区分生物组织中的散射和吸收系数。与实验测量相结合的理论假设表明,在该红外范围内,可以精确地测量组织衰减和吸收,并且可以将散射描述为两个大小之间的差异。通过应用这些理论和实验方法给出了心脏,脑,脾,视网膜和肾脏的衰减,吸收和散射光谱系数。通过这些组织的光受高散射的影响,导致多重吸收事件,并且应使用较长的波长来获得较低的衰减值。可以观察到,吸收系数在研究中的样本中具有类似的行为,由于1450和1950nm的吸水带,并且具有不同的绝对吸收值,这是根据每个组织的组分的不同吸收区域。可以确定散射系数,显示视网膜和脑样品之间的轻微差异,以及心脏,脾和肾组织之间的轻微差异。 (c)2020美国光学学会

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    《Applied optics》 |2020年第13期|共7页
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