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Two-dimensional near-infrared transillumination imaging of biomedical media with a chromium-doped forsterite laser

机译:掺铬镁橄榄石激光器对生物医学介质的二维近红外透射成像

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摘要

Transillumination images of objects hidden in normal and cancerous human breast tissues and bovine, porcine, and gallinaceous (chicken) tissues as well as model-random-scattering media were recorded with 1250-nm light from a chromium-doped forsterite laser. A Fourier space gate and a polarization gate were used to sort out image-bearing photons and discriminate against multiply scattered image-blurring photons. Better contrast, higher spatial resolution, and deeper penetration of samples were achieved for imaging with 1250-nm light than those obtained at shorter wavelengths, such as 1064 nm from a neodymium-doped yttrium aluminum garnet (YAG) laser. Better contrast and higher resolution were also obtained when the object was imaged through normal human breast tissue than through cancerous breast tissue. Images with marked distinction between fatty and fibrous human breast tissues were obtained when the Cr:forsterite laser was tuned to 1225 nm, a wavelength that resonates with an optical absorption band of breast fat tissues. Imaging with linearly polarized light revealed that the image quality depends significantly on the orientation of the polarization of the incident light with respect to the fibers in the bovine tissue. (C) 1998 Optical Society of America. [References: 16]
机译:掺杂铬的镁橄榄石激光器发出的1250 nm光记录了隐藏在正常和癌变的人类乳房组织,牛,猪和鸡的(鸡)组织以及模型随机散射介质中的物体的透射光图像。使用傅立叶空间门和偏振门来选出载有图像的光子,并区别于多重散射的混有图像的光子。与用较短的波长(例如掺钕钇铝石榴石(YAG)激光器的1064 nm)获得的波长相比,用1250 nm的光成像可获得更好的对比度,更高的空间分辨率和更深的样品穿透性。通过正常人的乳房组织而不是癌性乳房组织对物体成像时,还可以获得更好的对比度和更高的分辨率。当Cr:镁橄榄石激光调谐至1225 nm(与乳房脂肪组织的光吸收带共振的波长)时,可获得在脂肪和纤维性人乳房组织之间有明显区别的图像。用线性偏振光成像表明,图像质量在很大程度上取决于入射光相对于牛组织中纤维的偏振方向。 (C)1998年美国眼镜学会。 [参考:16]

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