A Device for Ribbon Collection for Array Tomography with Scanning Electron Microscopy

Author:

Koike Taro1,Kataoka Yosky23,Maeda Mitsuyo2,Hasebe Yuji2,Yamaguchi Yuuki2,Suga Mitsuo2,Saito Akira4,Yamada Hisao1

Affiliation:

1. Department of Anatomy and Cell Science, Kansai Medical University

2. Multi-Modal Microstructure Analysis Unit, RIKEN CLST-JEOL Collaboration Center

3. Cellular Function Imaging Team, Division of Bio-function Dynamics Imaging, RIKEN Center for Life Science Technologies

4. Institute of Biomedical Science Central Research Center, Kansai Medical University

Publisher

Japan Society of Histochemistry & Cytochemistry

Subject

Cell Biology,Histology,Physiology,Biochemistry,Pathology and Forensic Medicine

Reference12 articles.

1. 1 Briggman, K. L. and Bock, D. D. (2012) Volume electron microscopy for neuronal circuit reconstruction. Curr. Opin. Neurobiol. 22; 154–161.

2. 2 Denk, W. and Horstmann, H. (2004) Serial block-face scanning electron microscopy to reconstruct three-dimensional tissue nanostructure. PLoS Biol. 2; e329.

3. 3 Hayworth, K. J., Morgan, J. L., Schalek, R., Berger, D. R., Hildebrand, D. G. and Lichtman, J. W. (2014) Imaging ATUM ultrathin section libraries with Wafer Mapper: a multi-scale approach to EM reconstruction of neural circuits. Front. Neural Circuits 8; 68.

4. 4 Horstmann, H., Körber, C., Sätzler, K., Aydin, D. and Kuner, T. (2012) Serial section scanning electron microscopy (S3EM) on silicon wafers for ultra-structural volume imaging of cells and tissues. PLoS One 7; e35172.

5. 5 Knott, G., Marchman, H., Wall, D. and Lich, B. (2008) Serial section scanning electron microscopy of adult brain tissue using focused ion beam milling. J. Neurosci. 28; 2959–2964.

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