Reeves A, Parsons R L, Hettinger J W, Medford J I
Department of Biology, Colorado State University, Fort Collins, CO 80523-1878, USA.
J Microsc. 2002 Dec;208(Pt 3):177-89. doi: 10.1046/j.1365-2818.2002.01086.x.
Achieving the ability to non-destructively, non-invasively examine subsurface features of living multicellular organisms at a microscopic level is currently a challenge for biologists. Optical coherence microscopy (OCM) is a new photonics-based technology that can be used to address this challenge. OCM takes advantage of refractive properties of biological molecules to generate three-dimensional images that can be viewed with a computer. We describe new data processing techniques and a different visualization algorithm that substantially improve OCM images. We have applied OCM imaging, in conjunction with these improvements, to a variety of structures of plants, including leaves, flowers, ovules and germinating seeds, and describe the visualization of cellular and subcellular structures within intact plants. We present evidence, based on detailed examination of our OCM images, comparisons to classical plant anatomy studies, and current knowledge of light scattering by cells and their components, that we can distinguish nuclei, organelles and vacuoles. Detailed examination of vascular tissue, which contains cells with elaborate wall structure, shows that cell walls produce no significant OCM signal. These improvements to the visualization process, together with the powerful non-invasive, non-destructive aspects of the technology, will broaden the application of OCM to questions in studies of plants as well as animals.
在微观层面实现对活的多细胞生物体的地下特征进行非破坏性、非侵入性检查的能力,目前对生物学家来说是一项挑战。光学相干显微镜(OCM)是一种基于光子学的新技术,可用于应对这一挑战。OCM利用生物分子的折射特性生成三维图像,这些图像可以用计算机查看。我们描述了新的数据处理技术和一种不同的可视化算法,它们能显著改善OCM图像。我们将OCM成像与这些改进相结合,应用于植物的各种结构,包括叶子、花朵、胚珠和发芽的种子,并描述了完整植物内细胞和亚细胞结构的可视化。基于对我们的OCM图像的详细检查、与经典植物解剖学研究的比较以及目前关于细胞及其成分的光散射的知识,我们提供了证据,表明我们能够区分细胞核、细胞器和液泡。对含有具有精细壁结构的细胞的维管组织的详细检查表明,细胞壁不会产生明显的OCM信号。可视化过程的这些改进,连同该技术强大的非侵入性、非破坏性方面,将拓宽OCM在植物和动物研究问题中的应用。