Department of Electrical and Computer Engineering, University of Illinois at Urbana-Champaign, 1406 West Green Street, Urbana, IL 61801, USA.
Bone. 2012 Mar;50(3):643-50. doi: 10.1016/j.bone.2011.11.013. Epub 2011 Dec 2.
We propose the use of second-harmonic generation (SHG) microscopy for imaging collagen fibers in porcine femoral cortical bone. The technique is compared with scanning electron microscopy (SEM). SHG microscopy is shown to have excellent potential for bone imaging primarily due its intrinsic specificity to collagen fibers, which results in high contrast images without the need for specimen staining. Furthermore, this technique's ability to quantitatively assess collagen fiber organization is evaluated through an exploratory examination of bone structure as a function of age, from very young to mature bone. In particular, four different age groups: 1 month, 3.5 months, 6 months, and 30 months, were studied. Specifically, we employ the recently developed Fourier transform-second harmonic generation (FT-SHG) imaging technique for the quantification of the structural changes, and observe that as the bone develops, there is an overall reduction in porosity, the number of osteons increases, and the collagen fibers become comparatively more organized. It is also observed that the variations in structure across the whole cross-section of the bone increase with age. The results of this work show that quantitative SHG microscopy can serve as a valuable tool for evaluating the structural organization of collagen fibers in ex vivo bone studies.
我们提出使用二次谐波产生(SHG)显微镜来对猪股骨皮质骨中的胶原纤维进行成像。该技术与扫描电子显微镜(SEM)进行了比较。SHG 显微镜具有出色的成像潜力,主要是因为其对胶原纤维具有固有特异性,这导致在无需对标本进行染色的情况下即可获得高对比度的图像。此外,通过对不同年龄段(从非常年轻到成熟骨)的骨结构进行探索性检查,评估了该技术定量评估胶原纤维组织的能力。特别是,研究了四个不同的年龄组:1 个月、3.5 个月、6 个月和 30 个月。具体来说,我们采用最近开发的傅里叶变换二次谐波产生(FT-SHG)成像技术来量化结构变化,观察到随着骨骼的发育,骨密度总体降低,骨单位数量增加,胶原纤维变得更加有序。还观察到,随着年龄的增长,整个骨横截面的结构变化也在增加。这项工作的结果表明,定量 SHG 显微镜可以作为评估离体骨研究中胶原纤维结构组织的有用工具。