British Columbia Cancer Agency, 675 West 10th Avenue, Vancouver, British Columbia V5Z 1L3, Canada.
J Biomed Opt. 2009 Nov-Dec;14(6):064028. doi: 10.1117/1.3269679.
Fiber-optic image guides in confocal reflectance endomicroscopes introduce background backscatter that limits the achievable contrast in these devices. We show the dominant source of backscatter from the image guide is due to Rayleigh scattering at short wavelengths and terminal reflections of the fibers at long wavelengths. The effective Rayleigh scattering coefficient and the wavelength-independent reflectivity due terminal reflections are measured experimentally in a commercial image guide. The Rayleigh scattering component of backscatter can be accurately predicted using the fractional refractive-index difference and length of the fibers in the image guide. We also presented a simple model that can be used to predict signal-to-background ratio in a fiber-optic confocal reflectance endomicroscope for biologically relevant tissues and contrast agents that cover a wide range of reflectivity.
光纤图像导光在共聚焦反射内窥镜中引入背景背散射,限制了这些设备的对比度。我们表明,图像导光中的背散射的主要来源是短波长处的瑞利散射和长波长处光纤的末端反射。在商业图像导光中,通过实验测量了有效瑞利散射系数和末端反射引起的与波长无关的反射率。使用图像导光中的光纤的分数折射率差和长度,可以准确预测背散射的瑞利散射分量。我们还提出了一个简单的模型,可以用来预测生物相关组织和涵盖广泛反射率的对比剂的光纤共聚焦反射内窥镜中的信号与背景比。