Department of Physics, University of Toronto, Toronto, Ontario, Canada.
Biophys J. 2012 Nov 21;103(10):2093-105. doi: 10.1016/j.bpj.2012.10.019. Epub 2012 Nov 20.
The second-order nonlinear polarization properties of fibrillar collagen in various rat tissues (vertebrae, tibia, tail tendon, dermis, and cornea) are investigated with polarization-dependent second-harmonic generation (P-SHG) microscopy. Three parameters are extracted: the second-order susceptibility ratio, R = [Formula: see text] ; a measure of the fibril distribution asymmetry, |A|; and the weighted-average fibril orientation, <δ>. A hierarchical organizational model of fibrillar collagen is developed to interpret the second-harmonic generation polarization properties. Highlights of the model include: collagen type (e.g., type-I, type-II), fibril internal structure (e.g., straight, constant-tilt), and fibril architecture (e.g., parallel fibers, intertwined, lamellae). Quantifiable differences in internal structure and architecture of the fibrils are observed. Occurrence histograms of R and |A| distinguished parallel from nonparallel fibril distributions. Parallel distributions possessed low parameter values and variability, whereas nonparallel distributions displayed an increase in values and variability. From the P-SHG parameters of vertebrae tissue, a three-dimensional reconstruction of lamellae of intervertebral disk is presented.
用偏振相关二次谐波产生(P-SHG)显微镜研究了各种大鼠组织(椎体、胫骨、尾腱、真皮和角膜)中纤维状胶原蛋白的二阶非线性极化特性。提取了三个参数:二阶磁化率比,R=[公式];纤维分布不对称性的度量,|A|;和加权平均纤维取向,<δ>。建立了纤维状胶原蛋白的层次组织模型来解释二次谐波产生的偏振特性。该模型的要点包括:胶原蛋白类型(例如,I 型、II 型)、纤维内部结构(例如,直的、恒定倾斜的)和纤维结构(例如,平行纤维、交织、薄片)。观察到纤维内部结构和结构的可量化差异。R 和|A|的发生直方图区分了平行和非平行纤维分布。平行分布具有较低的参数值和可变性,而非平行分布则显示出值和可变性的增加。从椎组织的 P-SHG 参数中,呈现了椎间盘薄片的三维重建。