Diaspro A, Beltrame F, Fato M, Palmeri A, Ramoino P
Department of Physics, University of Genoa, Italy.
Microsc Res Tech. 1997 Feb 1;36(3):159-64. doi: 10.1002/(SICI)1097-0029(19970201)36:3<159::AID-JEMT3>3.0.CO;2-K.
We have used a confocal laser scanning optical microscope imaging device and a bioimage-oriented workstation equipped for augmented reality to study the helical sperm head of the octopus Eledone cirrhosa. This approach allows us to study different complex organisational motifs due to the spatial arrangement of linear helical structures. We consider this helical specimen an enlarged copy of one of the most important biostructures governing cell functioning such as chromatin-DNA. Moreover, this very same sample is made of highly compacted chromatin that can be studied at higher resolution, i.e., by means of scanning force microscopy. Fluorescence optical sectioning has been used to enter the spatial organisation. Three-dimensional images of single, twisted, and folded fibers are shown.
我们使用了共聚焦激光扫描光学显微镜成像设备和配备增强现实技术的生物图像导向工作站,来研究卷须章鱼(Eledone cirrhosa)的螺旋状精子头部。由于线性螺旋结构的空间排列,这种方法使我们能够研究不同的复杂组织模式。我们认为这种螺旋状标本是控制细胞功能的最重要生物结构之一(如染色质-DNA)的放大副本。此外,这个相同的样本由高度压缩的染色质组成,可以通过扫描力显微镜以更高的分辨率进行研究。荧光光学切片已被用于探究其空间组织。展示了单根、扭曲和折叠纤维的三维图像。