Reinholz F, Ashman R A, Eikelboom R H
Lions Eye Institute, Perth, and Centre of Ophthalmology and Visual Science, The University of Western Australia, Nedlands, Australia.
Cytometry. 1999 Nov 1;37(3):165-70. doi: 10.1002/(sici)1097-0320(19991101)37:3<165::aid-cyto1>3.0.co;2-a.
Various imaging properties of scanning laser ophthalmoscopes (SLO) such as contrast or depth discrimination, are superior to those of the traditional photographic fundus camera. However, most SLO are monochromatic whereas photographic systems produce colour images, which inherently contain information over a broad wavelength range.
An SLO system has been modified to allow simultaneous three channel imaging. Laser light sources in the visible and infrared spectrum were concurrently launched into the system. Using different wavelength triads, digital fundus images were acquired at high frame rates.
Favourable wavelengths combinations were established and high contrast, true (red, green, blue) or false (red, green, infrared) colour images of the retina were recorded. The monochromatic frames which form the colour image exhibit improved distinctness of different retinal structures such as the nerve fibre layer, the blood vessels, and the choroid.
A multi-channel SLO combines the advantageous imaging properties of a tunable, monochrome SLO with the benefits and convenience of colour ophthalmoscopy. The options to modify parameters such as wavelength, intensity, gain, beam profile, aperture sizes, independently for every channel assign a high degree of versatility to the system.
扫描激光检眼镜(SLO)的各种成像特性,如对比度或深度分辨力,优于传统的眼底照相相机。然而,大多数SLO是单色的,而照相系统可产生彩色图像,其本身包含宽波长范围内的信息。
对一个SLO系统进行了改进,以实现同时三通道成像。将可见光谱和红外光谱中的激光光源同时引入该系统。使用不同的波长组合,以高帧率采集数字眼底图像。
确定了有利的波长组合,并记录了视网膜的高对比度真(红、绿、蓝)或假(红、绿、红外)彩色图像。构成彩色图像的单色帧显示出不同视网膜结构(如神经纤维层、血管和脉络膜)的清晰度提高。
多通道SLO将可调谐单色SLO的有利成像特性与彩色检眼镜检查的优点和便利性结合在一起。每个通道独立修改波长、强度、增益、光束轮廓、孔径大小等参数的选项为该系统赋予了高度的通用性。