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Bone tissue phantoms for optical flowmeters at large interoptode spacing generated by 3D-stereolithography

机译:3D立体光刻技术在较大的光电二极管间距下用于光流量计的骨组织模型

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摘要

A bone tissue phantom prototype allowing to test, in general, optical flowmeters at large interoptode spacings, such as laser-Doppler flowmetry or diffuse correlation spectroscopy, has been developed by 3D-stereolithography technique. It has been demonstrated that complex tissue vascular systems of any geometrical shape can be conceived. Absorption coefficient, reduced scattering coefficient and refractive index of the optical phantom have been measured to ensure that the optical parameters reasonably reproduce real human bone tissue in vivo. An experimental demonstration of a possible use of the optical phantom, utilizing a laser-Doppler flowmeter, is also presented.
机译:通过3D立体光刻技术,已经开发出一种骨组织模型原型,该模型通常可以在较大的光电二极管间距下测试光学流量计,例如激光多普勒流量计或扩散相关光谱法。已经证明可以构想任何几何形状的复杂组织血管系统。已经测量了光学体模的吸收系数,减小的散射系数和折射率,以确保光学参数在体内合理地再现真实的人体骨骼组织。还介绍了利用激光多普勒流量计对光学体模进行可能使用的实验演示。

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