Aki Teranishi (@aki_teranishi) 's Twitter Profile
Aki Teranishi

@aki_teranishi

Bioengineering, Developmental biology, Cell biology PhD student at Nano-LSI, Kanazawa Univ. (D1) #Biomechanics #DevelopmentalBiology

ID: 1168090434385526784

calendar_today01-09-2019 09:17:29

17 Tweet

59 Followers

150 Following

Aki Teranishi (@aki_teranishi) 's Twitter Profile Photo

My first international conference abroad at Mechanobiology Institute! I also held a lab seminar with oral presentations at Tsuyoshi Hirashima lab & Yusuke Toyama lab. I received a lot of great feedback and had a wonderful time. Thank you all so much!

My first international conference abroad at <a href="/MBIsg/">Mechanobiology Institute</a>!

I also held a lab seminar with oral presentations at <a href="/hirashima0203/">Tsuyoshi Hirashima</a>  lab &amp; <a href="/Yusuke_Toyama/">Yusuke Toyama</a> lab.
I received a lot of great feedback and had a wonderful time.
Thank you all so much!
Shigenori Inagaki (@shigenori774) 's Twitter Profile Photo

新作プレプリント。"細胞機能"を維持したまま組織の透明度を上げる手法です。培養細胞、スフェロイド、オルガノイド、脳スライス、生きたマウスの脳で検証してます。 Isotonic and minimally invasive optical clearing media for live cell imaging ex vivo and in vivo biorxiv.org/content/10.110…

mechgen.jp (@mechgenlab) 's Twitter Profile Photo

A new paper, 'An actin bracket-induced elastoplastic transition determines epithelial folding irreversibility,' has been published in Nature Communications. Led by Aki Teranishi, the team includes Satoshi Toda (Osaka Univ) and Go Shioi (RIKEN). Reposting after accidentally deleting the

JST 科学技術振興機構 (@jst_info) 's Twitter Profile Photo

〈プレスリリース〉細胞が作り出す留め金の仕組みを解明~器官の形が不可逆に作られる原理から組織工学・再生医療への貢献に期待~ jst.go.jp/pr/announce/20… 上皮シートの折り目がL字金具のようなアクチン分子の集積構造によって、不可逆的に作られる仕組みを解明しました。 #JST #CREST

〈プレスリリース〉細胞が作り出す留め金の仕組みを解明~器官の形が不可逆に作られる原理から組織工学・再生医療への貢献に期待~
jst.go.jp/pr/announce/20…
上皮シートの折り目がL字金具のようなアクチン分子の集積構造によって、不可逆的に作られる仕組みを解明しました。

#JST #CREST
WPI-NanoLSI (@nanolsi) 's Twitter Profile Photo

Dr. Satoru Okuda and their team's paper has just been published in Nature Communications! Congratulations!! Nature Communications mechgen.jp An actin bracket-induced elastoplastic transition determines epithelial folding irreversibility nature.com/articles/s4146…

soft/living matter fanclub (@softlivmat_fc) 's Twitter Profile Photo

A. Teranishi, et al., An actin bracket-induced elastoplastic transition determines epithelial folding irreversibility. Nat. Commun. 15, 1–13 (2024). dx.doi.org/10.1038/s41467…

mechgen.jp (@mechgenlab) 's Twitter Profile Photo

Excited to share our new preprint: "Epithelium Stratifies via Nucleation and Growth Induced by Foam-Geometric Instability". Led by Fukamachi (ねぎ), we combine 3D vertex modeling, imaging, and AFM to uncover epithelial layer formation mechanics. biorxiv.org/cgi/content/sh…

Tetsuya Hiraiwa (@hiraiwatetsuya) 's Twitter Profile Photo

Three PhD students from mechgen.jp (Mr Teranishi, Mr Fukamachi, Mr Karimata) are visiting us Hiraiwa Lab - Theoretical Physical Biology Group in IoP-AS PALM labs @IOP AS TW to develop our biophysics research connection!! Thank you all for coming, sharing your beautiful results, and having stimulating discussions with us!

Three PhD students from <a href="/MechgenLab/">mechgen.jp</a> (Mr Teranishi, Mr Fukamachi, Mr Karimata) are visiting us <a href="/tpbghl/">Hiraiwa Lab - Theoretical Physical Biology Group</a> in IoP-AS <a href="/palmiopas/">PALM labs @IOP AS TW</a> to develop our biophysics research connection!! Thank you all for coming, sharing your beautiful results, and having stimulating discussions with us!
Aki Teranishi (@aki_teranishi) 's Twitter Profile Photo

I had the honor of participating in TPS2025 in Kaohsiung and giving a seminar at Academia Sinica. Huge thanks to Tetsuya Hiraiwa and his team Hiraiwa Lab - Theoretical Physical Biology Group for the warm invitation and insightful feedback!! It was a fantastic experience!

I had the honor of participating in TPS2025 in Kaohsiung and giving a seminar at Academia Sinica. Huge thanks to <a href="/HiraiwaTetsuya/">Tetsuya Hiraiwa</a> and his team <a href="/tpbghl/">Hiraiwa Lab - Theoretical Physical Biology Group</a>  for the warm invitation and insightful feedback!! It was a fantastic experience!
Science Japan (@sciencejapanjst) 's Twitter Profile Photo

A team at #KanazawaUniversity discovered how epithelial folds form irreversibly during development, controlled by actin brackets sensing deformation. This finding could advance tissue engineering & regenerative medicine. #Science #Development #TissueEngineering

A team at #KanazawaUniversity discovered how epithelial folds form irreversibly during development, controlled by actin brackets sensing deformation. This finding could advance tissue engineering &amp; regenerative medicine. #Science #Development #TissueEngineering
Kosuke Mizuno/水野 皓介 (@kosuke_mizu) 's Twitter Profile Photo

拡散希望! 7月18日(金)、名古屋で開催される細胞生物学会・発生生物学会合同大会にてワークショップ 「多細胞の設計図」 を平野咲雪さん Sayuki HIRANO と共にオーガナイズします。 バラエティー豊かな若手研究者が多細胞構造に関する最先端の知見を熱くご紹介します! ぜひご参加ください!

拡散希望!
7月18日(金)、名古屋で開催される細胞生物学会・発生生物学会合同大会にてワークショップ 「多細胞の設計図」 を平野咲雪さん <a href="/SayukiHirano/">Sayuki HIRANO</a>  と共にオーガナイズします。
バラエティー豊かな若手研究者が多細胞構造に関する最先端の知見を熱くご紹介します!
ぜひご参加ください!