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Quantitative photoacoustic measurement of tissue optical absorption spectrum aided by an optical contrast agent

机译:光学造影剂辅助定量测定组织光吸收光谱的光声

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摘要

In photoacoustic imaging, the intensity of photoacoustic signal induced by optical absorption in biological tissue is proportional to light energy deposition, which is the product of the absorption coefficient and the local light fluence. Because tissue optical properties are highly dependent on the wavelength, the spectrum of the local light fluence at a target tissue beneath the sample surface is different than the spectrum of the incident light fluence. Therefore, quantifying the tissue optical absorption spectrum by using a photoacoustic technique is not feasible without the knowledge of the local light fluence. In this work, a highly accurate photoacoustic measurement of the subsurface tissue optical absorption spectrum has been realized for the first time by introducing an extrinsic optical contrast agent with known optical properties. From the photoacoustic measurements with and without the contrast agent, a quantified measurement of the chromophore absorption spectrum can be achieved in a strongly scattering medium. Experiments on micro-flow vessels containing fresh canine blood buried in phantoms and chicken breast tissues were carried out in a wavelength range from 680 to 950 nm. Spectroscopic photoacoustic measurements of both oxygenated and deoxygenated blood specimens presented an improved match with the reference when employing this technique.
机译:在光声成像中,生物组织中光吸收引起的光声信号强度与光能沉积成正比,光能沉积是吸收系数与局部光通量的乘积。由于组织的光学特性高度依赖于波长,因此样品表面下方目标组织处的局部光通量的光谱与入射光通量的光谱不同。因此,在不了解局部光通量的情况下,通过使用光声技术来量化组织的光吸收光谱是不可行的。在这项工作中,通过引入具有已知光学性质的外在光学对比剂,首次实现了对地下组织光吸收光谱的高精度光声测量。根据使用和不使用造影剂的光声测量,可以在强散射介质中对发色团吸收光谱进行定量测量。在680至950 nm的波长范围内,对包含被掩埋在幻影和鸡胸组织中的新鲜犬血的微流容器进行了实验。使用该技术时,氧合和脱氧血标本的光谱光声测量显示与参考物的匹配度更高。

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