Liu Xuan, Zhang Kang, Huang Yong, Kang Jin U
Department of Electrical and Computer Engineering, Johns Hopkins University, 3400 N. Charles St., Baltimore, MD 21218, USA.
Biomed Opt Express. 2011 Nov 1;2(11):2995-3009. doi: 10.1364/BOE.2.002995. Epub 2011 Oct 4.
We propose and studied optical coherence tomography (OCT) combining spectroscopic (SOCT) and speckle variance (svOCT) functions to effectively detect locations of microvasculatures and assess blood oxygen saturation level. Chorioallantoic membrane of a chick embryo was imaged in vivo to perform the analysis of the system. We also studied the effect of speckle in spectral domain using experimental data and performed time-averaging to reduce speckle noise locally. We combined SOCT and svOCT images using hue, saturation and value (HSV) color map to show the localized spectroscopic property of blood. Results show distinct spectroscopic properties between arterial blood and capillary blood.
我们提出并研究了结合光谱(SOCT)和散斑方差(svOCT)功能的光学相干断层扫描(OCT),以有效检测微血管的位置并评估血氧饱和度水平。对鸡胚的尿囊绒膜进行体内成像以进行系统分析。我们还利用实验数据研究了光谱域中散斑的影响,并进行时间平均以局部降低散斑噪声。我们使用色相、饱和度和明度(HSV)颜色映射来组合SOCT和svOCT图像,以显示血液的局部光谱特性。结果显示动脉血和毛细血管血之间具有明显的光谱特性。