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Rapid Method for Electron Tomographic Reconstruction and Three-Dimensional Modeling of the Murine Synapse Using an Automated Fiducial Marker-Free System

Authors
Kim, Hyun-wookOh, Seung HakKim, NamkugNakazawa, EikoRhyu, Im Joo
Issue Date
8월-2013
Publisher
CAMBRIDGE UNIV PRESS
Keywords
electron tomography; fiducial; WBP algorithm; TBR algorithm; A-View; 3D reconstruction; synapse
Citation
MICROSCOPY AND MICROANALYSIS, v.19, pp.182 - 187
Indexed
SCIE
SCOPUS
Journal Title
MICROSCOPY AND MICROANALYSIS
Volume
19
Start Page
182
End Page
187
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/102614
DOI
10.1017/S1431927613012622
ISSN
1431-9276
Abstract
Electron tomography (ET) has recently afforded new insights into neuronal architecture. However, the tedious process of sample preparation, image acquisition, alignment, back projection, and additional segmentation process of ET repels beginners. We have tried Hitachi's commercial packages integrated with a Hitachi H-7650 TEM to examine the potential of using an automated fiducial-less approach for our own neuroscience research. Semi-thick sections (200-300 nm) were cut from blocks of fixed mouse (C57BL) cerebellum and prepared for ET. Sets of images were collected automatically as each section was tilted by 2 degrees increments (+/- 60 degrees). "Virtual" image volumes were computationally reconstructed in three dimension (3D) with the EMIP software using either the commonly used "weighted back-projection" (WBP) method or "topography-based reconstruction" (TBR) algorithm for comparison. Computed tomograms using the TBR were more precisely reconstructed compared with the WBP method. Following reconstruction, the image volumes were imported into the 3D editing software A-View and segmented according to synaptic organization. The detailed synaptic components were revealed by very thin virtual image slices; 3D models of synapse structure could be constructed efficiently. Overall, this simplified system provided us with a graspable tool for pursuing ET studies in neuroscience.
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