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In situ estimation of optical properties of rat and monkey brains using femtosecond time-resolved measurements

机译:飞秒时间分辨测量原位估计大鼠和猴脑的光学特性

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摘要

An accurate knowledge of tissue optical properties (absorption coefficients, μa, and reduced scattering coefficients, μs’) is critical for precise modeling of light propagation in biological tissue, essential for developing diagnostic and therapeutic optical techniques that utilize diffusive photons. A great number of studies have explored the optical properties of various tissue, and these values are not known in detail due to difficulties in the experimental determination and significant variations in tissue constitution. Especially, in situ estimates of the optical properties of brain tissue, a common measurement target in optical imaging, is a challenge because of its layer structure (where the thin gray matter covers the white matter). Here, we report an approach to in situ estimates of the μa and μs’ of the gray and white matter in living rat and monkey brains by using femtosecond time-resolved measurements and Monte Carlo simulation. The results demonstrate that the μa of the gray matter is larger than that of the white matter, while there was no significant difference in the μs’ between the gray and white matter. The optical properties of the rat brain were very similar to those of the monkey brain except for the μa of the gray matter here.
机译:准确了解组织的光学特性(吸收系数μa和减小的散射系数μs')对于精确建模生物组织中的光传播至关重要,这对于开发利用扩散光子的诊断和治疗光学技术至关重要。大量研究已经探究了各种组织的光学特性,由于实验确定的困难和组织组成的显着变化,这些值尚不清楚。尤其是,对大脑组织的光学特性的原位估计是光学成像中常见的测量目标,这是一个挑战,因为它具有层结构(薄的灰质覆盖白质)。在这里,我们报告了一种使用飞秒时间分辨测量和蒙特卡洛模拟方法对活的大鼠和猴脑中的灰色和白色物质的μa和μs’s进行原位估计的方法。结果表明,灰色物质的μa大于白色物质的μa,而灰色物质和白色物质的μs’没有显着差异。除了这里的灰质的μa外,大鼠脑的光学特性与猴脑的光学特性非常相似。

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