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パーソナルゲノム情報に基づく脳疾患メカニズムの解明

Development of technologies for personal genome analyses. Elucidation of molecular basis of brain diseases based on personal genome analysis. Shoji Tsuji (The University of Tokyo). Http:/ www.personal-genome.jp/en/about/next generation sequencer/. Atsushi Toyoda (National Institute of Genetics). Identification of molecular basis of brain diseases. Identification of risk genes and their molecular mechanism on the development of Alzheimer disease based on the personal genome analysis. Comprehensive analysi...

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パーソナルゲノム情報に基づく脳疾患メカニズムの解明 | personal-genome.jp Reviews
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Development of technologies for personal genome analyses. Elucidation of molecular basis of brain diseases based on personal genome analysis. Shoji Tsuji (The University of Tokyo). Http:/ www.personal-genome.jp/en/about/next generation sequencer/. Atsushi Toyoda (National Institute of Genetics). Identification of molecular basis of brain diseases. Identification of risk genes and their molecular mechanism on the development of Alzheimer disease based on the personal genome analysis. Comprehensive analysi...
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パーソナルゲノム情報に基づく脳疾患メカニズムの解明 | personal-genome.jp Reviews

https://personal-genome.jp

Development of technologies for personal genome analyses. Elucidation of molecular basis of brain diseases based on personal genome analysis. Shoji Tsuji (The University of Tokyo). Http:/ www.personal-genome.jp/en/about/next generation sequencer/. Atsushi Toyoda (National Institute of Genetics). Identification of molecular basis of brain diseases. Identification of risk genes and their molecular mechanism on the development of Alzheimer disease based on the personal genome analysis. Comprehensive analysi...

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personal-genome.jp personal-genome.jp
1

日本人統合失調症家系のゲノム解析に基づく疾患発症に関わるゲノム多様性と病態の解明 « パーソナルゲノム情報に基づく脳疾患メカニズムの解明

http://www.personal-genome.jp/grantsinaid/schizophrenia-in-japanese

日本では兄弟 姉妹 が統合失調症に罹患されたご家族のご協力により兄弟 姉妹 が罹患する原因の一部となっている染色体領域があることが分かっている。

2

優性遺伝型脊髄小脳変性症のハイスループット遺伝子変異探索 « パーソナルゲノム情報に基づく脳疾患メカニズムの解明

http://www.personal-genome.jp/grantsinaid/sca_tmdu

研究代表者 石川 欽也 東京医科歯科大学.

3

公募情報 « パーソナルゲノム情報に基づく脳疾患メカニズムの解明

http://www.personal-genome.jp/job

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パーソナルゲノム情報に基づく脳疾患メカニズムの解明

http://www.personal-genome.jp/ja

Development of technologies for personal genome analyses. Elucidation of molecular basis of brain diseases based on personal genome analysis. Shoji Tsuji (The University of Tokyo). Http:/ www.personal-genome.jp/en/about/next generation sequencer/. Atsushi Toyoda (National Institute of Genetics). Identification of molecular basis of brain diseases. Identification of risk genes and their molecular mechanism on the development of Alzheimer disease based on the personal genome analysis. Comprehensive analysi...

5

真の全エキソン解読を達成するための改良エキソーム解析法の開発 « パーソナルゲノム情報に基づく脳疾患メカニズムの解明

http://www.personal-genome.jp/grantsinaid/the_improved_exome_sequencing

研究代表者 工藤 純 慶應義塾大学医学部.

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mlab.cb.k.u-tokyo.ac.jp mlab.cb.k.u-tokyo.ac.jp

バイオインフォマティクス, 森下研究室Morishita Laboratory

http://mlab.cb.k.u-tokyo.ac.jp/members

List of Doctral Theses. 2011] Reginaldo Kuroshu. Computational approaches for high-throughput sequencing and assembly of clone sequences. Kuroshu RM, Watanabe J, Sugano S, Morishita S, Suzuki Y, Kasahara M. Cost-effective sequencing of full-length cDNA clones powered by a de novo-reference hybrid assembly. 2011] Hiroshi Hatsuda. Marked Point Process to Analyze Biological Data. IEEE 6th International Symposium on Image and Signal Processing and Analysis. Vol 3, pp.206-217 (2010). Shin Sasaki, Cecilia C&#4...

mlab.cb.k.u-tokyo.ac.jp mlab.cb.k.u-tokyo.ac.jp

バイオインフォマティクス, 森下研究室Morishita Laboratory

http://mlab.cb.k.u-tokyo.ac.jp/2014/08/26/1069

This entry was posted in ニュース. 東京大学 大学院 新領域 創成科学研究科 メディカル情報生命専攻. Proudly powered by WordPress.

mlab.cb.k.u-tokyo.ac.jp mlab.cb.k.u-tokyo.ac.jp

Bioinformatics, Morishita LabMorishita Laboratory

http://mlab.cb.k.u-tokyo.ac.jp/ja

Apologies, but no results were found for the requested archive. Perhaps searching will help find a related post. 東京大学 大学院 新領域 創成科学研究科 メディカル情報生命専攻. Proudly powered by WordPress.

mlab.cb.k.u-tokyo.ac.jp mlab.cb.k.u-tokyo.ac.jp

バイオインフォマティクス, 森下研究室Morishita Laboratory

http://mlab.cb.k.u-tokyo.ac.jp/software

UT Genome Browser (Yeast). ヒト血液系における遺伝子の SAGE tag 解析サーバー. 東京大学 大学院 新領域 創成科学研究科 メディカル情報生命専攻. Proudly powered by WordPress.

mlab.cb.k.u-tokyo.ac.jp mlab.cb.k.u-tokyo.ac.jp

バイオインフォマティクス, 森下研究室Morishita Laboratory

http://mlab.cb.k.u-tokyo.ac.jp/author/moris

東京大学 大学院 新領域 創成科学研究科 メディカル情報生命専攻. Proudly powered by WordPress.

gi.k.u-tokyo.ac.jp gi.k.u-tokyo.ac.jp

Bioinformatics, Morishita LabMorishita Laboratory

http://www.gi.k.u-tokyo.ac.jp/ja

Apologies, but no results were found for the requested archive. Perhaps searching will help find a related post. 東京大学 大学院 新領域 創成科学研究科 メディカル情報生命専攻. Proudly powered by WordPress.

mlab.cb.k.u-tokyo.ac.jp mlab.cb.k.u-tokyo.ac.jp

バイオインフォマティクス, 森下研究室Morishita Laboratory

http://mlab.cb.k.u-tokyo.ac.jp/研究内容

そこで DNAにはどのような変化が起きるか 不変量および不変な性質はなにか を主題に膨大なDNAデータおよび画像データを情報分析してきました。 過去 6 10億年、脊椎動物や昆虫の染色体がどのように進化してきたかを分析し、とくに1970年にOhnoが提唱した 脊椎動物初期にDNA全体が2回重複し遺伝子セットを豊かにした という仮説を、ヒト、チキン、メダカ、フグのDNAを比較して解明しました。 Reconstruction of the vertebrate ancestral genome. Rapid detection of expanded short tandem repeats in personal genomics. Mutations in Autosomal Dominant Familial ALS Type 19. また脊椎動物では CpG の C がメチル化されると T へ変異しやすいですが、その周辺の塩基も変異する傾向も報告しました。 CpG の C がメチル化されると T へ変異しやすいだけでなく、その周辺の塩基も変異する傾向.

mlab.cb.k.u-tokyo.ac.jp mlab.cb.k.u-tokyo.ac.jp

バイオインフォマティクス, 森下研究室Morishita Laboratory

http://mlab.cb.k.u-tokyo.ac.jp/category/news

東京大学 大学院 新領域 創成科学研究科 メディカル情報生命専攻. Proudly powered by WordPress.

mlab.cb.k.u-tokyo.ac.jp mlab.cb.k.u-tokyo.ac.jp

バイオインフォマティクス, 森下研究室Morishita Laboratory

http://mlab.cb.k.u-tokyo.ac.jp/directions

東京大学 大学院 新領域 創成科学研究科 メディカル情報生命専攻. Proudly powered by WordPress.

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パーソナルゲノム情報に基づく脳疾患メカニズムの解明

Development of technologies for personal genome analyses. Elucidation of molecular basis of brain diseases based on personal genome analysis. Shoji Tsuji (The University of Tokyo). Http:/ www.personal-genome.jp/en/about/next generation sequencer/. Atsushi Toyoda (National Institute of Genetics). Identification of molecular basis of brain diseases. Identification of risk genes and their molecular mechanism on the development of Alzheimer disease based on the personal genome analysis. Comprehensive analysi...

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