首页> 外文期刊>Journal of the Optical Society of America, A. Optics, image science, and vision >Simulation of scanning laser techniques for optical imaging of blood-related intrinsic signals
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Simulation of scanning laser techniques for optical imaging of blood-related intrinsic signals

机译:用于血液相关内在信号光学成像的扫描激光技术的仿真

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Optical imaging of intrinsic signals detects neural activation patterns by taking video images of the local activity-related changes in the light intensity reflected from neural tissue (intrinsic signals). At red light (605 nm), these signals are caused mainly by local variations of the tissue absorption following deoxygenation of blood. We characterize the image generation process during optical imaging by Monte Carlo simulations of light propagation through a homogeneous model tissue equipped with a local absorber. Conventional video imaging and scanning laser imaging are compared. We find that, compared with video imaging, scanning laser techniques drastically increase both the contrast and the lateral resolution of optical recordings. Also, the maximum depth up to which the signals can be detected is increased by roughly a factor of 2 when scanning laser optical imaging is used. Further, the radial profile of the diffuse-reflectance pattern for each pixel is subject to changes that correlate with the depth of the absorber within the tissue. We suggest a detection geometry for the online measurement of these radial profiles that can be realized by modifying a standard scanning laser ophthalmoscope.
机译:本征信号的光学成像通过拍摄从神经组织反射的光强度(本征信号)中与局部活动有关的局部变化的视频图像来检测神经激活模式。在红光(605 nm)下,这些信号主要是由血液脱氧后组织吸收的局部变化引起的。我们通过蒙特卡洛模拟通过装备有本地吸收器的均质模型组织的光传播来表征光学成像期间的图像生成过程。比较了常规视频成像和扫描激光成像。我们发现,与视频成像相比,扫描激光技术大大提高了光学记录的对比度和横向分辨率。而且,当使用扫描激光光学成像时,可以检测到信号的最大深度大约增加了2倍。此外,每个像素的漫反射图案的径向轮廓经受与组织内吸收体的深度相关的变化。我们建议对这些径向轮廓进行在线测量的检测几何形状,可以通过修改标准的扫描激光检眼镜来实现。

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