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Optical properties of apple skin and flesh in the wavelength range from 350 to 2200 nm

机译:苹果皮和果肉在350至2200 nm波长范围内的光学特性

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摘要

Optical measurement of fruit quality is challenging due to the presence of a skin around the fruit flesh and the multiple scattering by the structured tissues. To gain insight in the light-tissue interaction, the optical properties of apple skin and flesh tissue are estimated in the 350-2200nm range for three cultivars. For this purpose, single integrating sphere measurements are combined with inverse adding- doubling. The observed absorption coefficient spectra are dominated by water in the near infrared and by pigments and chlorophyll in the visible region, whose concentrations are much higher in skin tissue. The scattering coefficient spectra show the monotonic decrease with increasing wavelength typical for biological tissues with skin tissue being approximately three times more scattering than flesh tissue. Comparison to the values from time-resolved spectroscopy reported in literature showed comparable profiles for the optical properties, but overestimation of the absorption coefficient values, due to light losses.
机译:由于果肉周围存在皮肤以及结构化组织的多次散射,因此对水果质量进行光学测量具有挑战性。为了了解光组织之间的相互作用,估计了三个品种在350-2200nm范围内苹果皮和果肉组织的光学特性。为此,将单个积分球测量与反加倍相结合。所观察到的吸收系数光谱主要由近红外中的水以及可见区域中的色素和叶绿素所控制,后者在皮肤组织中的浓度要高得多。散射系数谱显示,随着生物组织典型波长的增加,单调降低,皮肤组织的散射约为肉组织的三倍。与文献中报道的时间分辨光谱的值进行比较,显示出可比较的光学特性,但是由于光损失,高估了吸收系数值。

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