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ViBrism DB: an interactive search and viewer platform for 2D/3D anatomical images of gene expression and co-expression networks

Understanding anatomical structures and biological functions based on gene expression is critical in a systemic approach to address the complexity of the mammalian brain, where >25 000 genes are expressed in a precise manner. Co-expressed genes are thought to regulate cell type- or region-specifi...

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Autores principales: Morita, Masahiko, Shimokawa, Kazuro, Nishimura, Masaomi, Nakamura, Sakiko, Tsujimura, Yuki, Takemoto, Satoko, Tawara, Takehiro, Yokota, Hideo, Wemler, Shuhei, Miyamoto, Daisuke, Ikeno, Hidetoshi, Sato, Akira, Furuichi, Teiichi, Kobayashi, Norio, Okumura, Yoshihiro, Yamaguchi, Yoko, Okamura-Oho, Yuko
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Oxford University Press 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6324046/
https://www.ncbi.nlm.nih.gov/pubmed/30371824
http://dx.doi.org/10.1093/nar/gky951
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author Morita, Masahiko
Shimokawa, Kazuro
Nishimura, Masaomi
Nakamura, Sakiko
Tsujimura, Yuki
Takemoto, Satoko
Tawara, Takehiro
Yokota, Hideo
Wemler, Shuhei
Miyamoto, Daisuke
Ikeno, Hidetoshi
Sato, Akira
Furuichi, Teiichi
Kobayashi, Norio
Okumura, Yoshihiro
Yamaguchi, Yoko
Okamura-Oho, Yuko
author_facet Morita, Masahiko
Shimokawa, Kazuro
Nishimura, Masaomi
Nakamura, Sakiko
Tsujimura, Yuki
Takemoto, Satoko
Tawara, Takehiro
Yokota, Hideo
Wemler, Shuhei
Miyamoto, Daisuke
Ikeno, Hidetoshi
Sato, Akira
Furuichi, Teiichi
Kobayashi, Norio
Okumura, Yoshihiro
Yamaguchi, Yoko
Okamura-Oho, Yuko
author_sort Morita, Masahiko
collection PubMed
description Understanding anatomical structures and biological functions based on gene expression is critical in a systemic approach to address the complexity of the mammalian brain, where >25 000 genes are expressed in a precise manner. Co-expressed genes are thought to regulate cell type- or region-specific brain functions. Thus, well-designed data acquisition and visualization systems for profiling combinatorial gene expression in relation to anatomical structures are crucial. To this purpose, using our techniques of microtomy-based gene expression measurements and WebGL-based visualization programs, we mapped spatial expression densities of genome-wide transcripts to the 3D coordinates of mouse brains at four post-natal stages, and built a database, ViBrism DB (http://vibrism.neuroinf.jp/). With the DB platform, users can access a total of 172 022 expression maps of transcripts, including coding, non-coding and lncRNAs in the whole context of 3D magnetic resonance (MR) images. Co-expression of transcripts is represented in the image space and in topological network graphs. In situ hybridization images and anatomical area maps are browsable in the same space of 3D expression maps using a new browser-based 2D/3D viewer, BAH viewer. Created images are shareable using URLs, including scene-setting parameters. The DB has multiple links and is expandable by community activity.
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spelling pubmed-63240462019-01-10 ViBrism DB: an interactive search and viewer platform for 2D/3D anatomical images of gene expression and co-expression networks Morita, Masahiko Shimokawa, Kazuro Nishimura, Masaomi Nakamura, Sakiko Tsujimura, Yuki Takemoto, Satoko Tawara, Takehiro Yokota, Hideo Wemler, Shuhei Miyamoto, Daisuke Ikeno, Hidetoshi Sato, Akira Furuichi, Teiichi Kobayashi, Norio Okumura, Yoshihiro Yamaguchi, Yoko Okamura-Oho, Yuko Nucleic Acids Res NAR Breakthrough Article Understanding anatomical structures and biological functions based on gene expression is critical in a systemic approach to address the complexity of the mammalian brain, where >25 000 genes are expressed in a precise manner. Co-expressed genes are thought to regulate cell type- or region-specific brain functions. Thus, well-designed data acquisition and visualization systems for profiling combinatorial gene expression in relation to anatomical structures are crucial. To this purpose, using our techniques of microtomy-based gene expression measurements and WebGL-based visualization programs, we mapped spatial expression densities of genome-wide transcripts to the 3D coordinates of mouse brains at four post-natal stages, and built a database, ViBrism DB (http://vibrism.neuroinf.jp/). With the DB platform, users can access a total of 172 022 expression maps of transcripts, including coding, non-coding and lncRNAs in the whole context of 3D magnetic resonance (MR) images. Co-expression of transcripts is represented in the image space and in topological network graphs. In situ hybridization images and anatomical area maps are browsable in the same space of 3D expression maps using a new browser-based 2D/3D viewer, BAH viewer. Created images are shareable using URLs, including scene-setting parameters. The DB has multiple links and is expandable by community activity. Oxford University Press 2019-01-08 2018-10-29 /pmc/articles/PMC6324046/ /pubmed/30371824 http://dx.doi.org/10.1093/nar/gky951 Text en © The Author(s) 2018. Published by Oxford University Press on behalf of Nucleic Acids Research. http://creativecommons.org/licenses/by/4.0/ This is an Open Access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted reuse, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle NAR Breakthrough Article
Morita, Masahiko
Shimokawa, Kazuro
Nishimura, Masaomi
Nakamura, Sakiko
Tsujimura, Yuki
Takemoto, Satoko
Tawara, Takehiro
Yokota, Hideo
Wemler, Shuhei
Miyamoto, Daisuke
Ikeno, Hidetoshi
Sato, Akira
Furuichi, Teiichi
Kobayashi, Norio
Okumura, Yoshihiro
Yamaguchi, Yoko
Okamura-Oho, Yuko
ViBrism DB: an interactive search and viewer platform for 2D/3D anatomical images of gene expression and co-expression networks
title ViBrism DB: an interactive search and viewer platform for 2D/3D anatomical images of gene expression and co-expression networks
title_full ViBrism DB: an interactive search and viewer platform for 2D/3D anatomical images of gene expression and co-expression networks
title_fullStr ViBrism DB: an interactive search and viewer platform for 2D/3D anatomical images of gene expression and co-expression networks
title_full_unstemmed ViBrism DB: an interactive search and viewer platform for 2D/3D anatomical images of gene expression and co-expression networks
title_short ViBrism DB: an interactive search and viewer platform for 2D/3D anatomical images of gene expression and co-expression networks
title_sort vibrism db: an interactive search and viewer platform for 2d/3d anatomical images of gene expression and co-expression networks
topic NAR Breakthrough Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6324046/
https://www.ncbi.nlm.nih.gov/pubmed/30371824
http://dx.doi.org/10.1093/nar/gky951
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