Xu Qian, Lei Jun-feng, Zeng Li-bo
School of Electronic Information, Wuhan University, Wuhan 430079, China.
Guang Pu Xue Yu Guang Pu Fen Xi. 2010 Jul;30(7):1886-9.
A small, simple intravital microcirculation multi-spectral imaging system was constructed. Orthogonal polarization spectral (OPS) imaging and liquid crystal tunable filter (LCTF) were used for intravital microcirculation multi-spectral imaging. LCTF has excellent imaging quality and low-power loss, without moving parts and image shift. It can provide continuously, rapid and random-access selection of any wavelength in the visible to near-infrared range. An ear of nude mouse was adopted as experiment specimen. The multi-spectral images of ear microvessel of the nude mouse were acquired by this imaging system in two ways (detection polarization angle 90 degrees and 0 degrees). Compared with detection polarization angle 0 degrees way the images acquired by orthogonal polarization spectral imaging way(detection polarization angle 90 degrees) had better contrast and more details. It is concluded that the experiment has proved that the orthogonal polarization multi-spectral technique can enhance the effect of observation of intravital microcirculation.
构建了一种小型、简易的活体微循环多光谱成像系统。采用正交偏振光谱(OPS)成像和液晶可调滤光片(LCTF)进行活体微循环多光谱成像。LCTF具有优异的成像质量和低功耗,无运动部件且无图像偏移。它能在可见光到近红外范围内连续、快速且随机地选择任何波长。采用裸鼠耳部作为实验标本。通过该成像系统以两种方式(检测偏振角90度和0度)采集裸鼠耳部微血管的多光谱图像。与检测偏振角0度的方式相比,通过正交偏振光谱成像方式(检测偏振角90度)采集的图像具有更好的对比度和更多细节。得出结论,该实验证明了正交偏振多光谱技术可增强活体微循环的观察效果。