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Visible light spectral domain optical coherence microscopy system for ex vivo imaging

机译:用于离体成像的可见光谱域光学相干显微镜系统

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A visible light spectral domain optical coherence microscopy system operating in the wavelength range of 450-680 nm was developed. The resulting large wavelength range of 230 nm enabled an ultrahigh axial resolution of 0.88 μm in tissue. The setup consisted of a Michelson interferometer combined with a homemade spectrometer with a spectral resolution of 0.03 nm. Scanning of 1 × 1 mm~2 and 0.5 × 0.5 mm~2 areas was performed by an integrated microelectromechanical mirror. After scanning the light beam is focused onto the tissue by a commercial objective with a 10 × magnification, resulting in a transverse resolution of 2 μm. Specification measurements showed that a -89 dB sensitivity with a 24 dB/mm roll-off could be achieved with the system. First of all the capabilities of the system were tested by investigating millimeter paper, tape and the USAF (US Air Force) 1951 resolution test target. Finally cerebral tissues from non-pathological and Alzheimer's disease affected brains were investigated. The results showed that structures, such as white and gray matter, could be distinguished. Furthermore a first effort was made to differentiate Alzheimer's disease from healthy brain tissue.
机译:开发了在450-680 nm波长范围内运行的可见光谱域光学相干显微镜系统。产生的230 nm大波长范围使组织的轴向分辨率达到0.88μm。该设置包括一个迈克尔逊干涉仪和一个自制光谱仪,光谱分辨率为0.03 nm。通过集成的微机电镜对1×1 mm〜2和0.5×0.5 mm〜2区域进行扫描。扫描后,通过商用物镜将光束聚焦到组织上,放大倍率为10倍,从而产生2μm的横向分辨率。规格测量表明,使用该系统可以实现-89 dB的灵敏度和24 dB / mm的滚降。首先,通过调查毫米纸,胶带和USAF(美国空军)1951年分辨率测试目标来测试系统的功能。最后,研究了非病理性和阿尔茨海默氏病影响的大脑的脑组织。结果表明,可以区分诸如白色和灰色物质的结构。此外,还进行了从健康的脑组织中区分出阿尔茨海默氏病的首次尝试。

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