The New Zealand Institute for Plant and Food Research Limited, Hamilton, New Zealand.
Appl Spectrosc. 2013 Aug;67(8):993-6. doi: 10.1366/12-06971a.
We investigated the stability of light transmission through Intralipid-based optical phantoms in the wavelength range of 400-950 nm at temperatures between 35 and 70 °C. Optical phantoms are materials commonly used to simulate the light scattering and absorption properties of biological materials. These simulations require the phantom to be optically stable. We demonstrate that the scattering properties of Intralipid remain stable at higher temperatures, varying less than 0.5%. We also present results that show this is not the case for absorption below 700 nm at 35 and 70 °C, with greater instability at 70 °C. For example, at 500 nm, the light intensity transmitted through 15 mm of Intralipid dropped 39% over 12 h. We demonstrate that oxidation of fatty acids in Intralipid could account for this effect and show, by flushing the system continuously with nitrogen gas, the instability is reduced.
我们研究了 Intralipid 基光学模型在 35 至 70°C 温度范围内 400-950nm 波长范围内的光透过稳定性。光学模型是一种常用于模拟生物材料光散射和吸收特性的材料。这些模拟需要模型具有光学稳定性。我们证明,Intralipid 的散射特性在较高温度下保持稳定,变化小于 0.5%。我们还提供了结果表明,在 35 和 70°C 下,吸收低于 700nm 的情况下并非如此,70°C 时的不稳定性更大。例如,在 500nm 处,通过 15mm 的 Intralipid 传输的光强度在 12 小时内下降了 39%。我们证明,Intralipid 中脂肪酸的氧化可能是造成这种影响的原因,并通过连续用氮气冲洗系统表明,不稳定性降低。