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- Overview
- Anatomy and Histology
- Cryo-Electron Microscopy
- Electron Microscopy
- Flow Cytometry
- Gene Targeting and Transgenics
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- Invertebrate Shared Resource
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- Molecular Genomics
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Export 1367 results:
Author Title Type [ Year
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2022
Namiki S, Ros IG, Morrow C, Rowell WJ, Card GM, Korff W, Dickinson MH.
2022. A population of descending neurons that regulates the flight motor of Drosophila.. Current Biology. 32(5):1189-1196.
Tarazi S, Aguilera-Castrejon A, Joubran C, Ghanem N, Ashouokhi S, Roncato F, Wildschutz E, Haddad M, Oldak B, Gomez-Cesar E et al..
2022. Post-gastrulation synthetic embryos generated ex utero from mouse naive ESCs. Cell. 185:3290-3306.e25.
Tarazi S, Aguilera-Castrejon A, Joubran C, Ghanem N, Ashouokhi S, Roncato F, Wildschutz E, Haddad M, Oldak B, Gomez-Cesar E et al..
2022. Post-gastrulation synthetic embryos generated ex utero from mouse naive ESCs. Cell. 185:3290-3306.e25.
Tarazi S, Aguilera-Castrejon A, Joubran C, Ghanem N, Ashouokhi S, Roncato F, Wildschutz E, Haddad M, Oldak B, Gomez-Cesar E et al..
2022. Post-gastrulation synthetic embryos generated ex utero from mouse naive ESCs. Cell. 185:3290-3306.e25.
Lillvis JL, Otsuna H, Ding X, Pisarev I, Kawase T, Colonell J, Rokicki K, Goina C, Gao R, Hu A et al..
2022. Rapid reconstruction of neural circuits using tissue expansion and lattice light sheet microscopy. eLife.
Kim H, Gao EB, Draper A, Berens NC, Vihma H, Zhang X, Higashi-Howard A, Ritola KD, Simon JM, Kennedy AJ et al..
2022. Rescue of behavioral and electrophysiological phenotypes in a Pitt-Hopkins syndrome mouse model by genetic restoration of expression.. eLife. 11
Mahalingam G, Torres R, Kapner D, Trautman ET, Fliss T, Seshamani S, Perlman E, Young R, Kinn S, Buchanan JA et al..
2022. A scalable and modular automated pipeline for stitching of large electron microscopy datasets.. eLife. 11
Wu S-Y, Wen Y, Serre NBC, Laursen CCharlotte, Dietz AGrostøl, Taylor BR, Drobizhev M, Molina RS, Aggarwal A, Rancic V et al..
2022. A sensitive and specific genetically encoded potassium ion biosensor for in vivo applications across the tree of life.. PLoS Biology. 20(9):e3001772.
Sheban D, Shani T, Maor R, Aguilera-Castrejon A, Mor N, Oldak B, Shmueli MD, Eisenberg-Lerner A, Bayerl J, Hebert J et al..
2022. SUMOylation of linker histone H1 drives chromatin condensation and restriction of embryonic cell fate identity. Molecular Cell. 82:106-122.e9.
Parteka-Tojek Z, Zhu JJufen, Lee B, Jodkowska K, Wang P, Aaron J, Chew T-L, Banecki K, Plewczyński D, Ruan Y.
2022. Super-resolution visualization of chromatin loop folding in human lymphoblastoid cells using interferometric photoactivated localization microscopy.. Scientific Reports. 12(1):8582.
Liu X, Viswanadhapalli S, Kumar S, Lee T-K, Moore A, Ma S, Chen L, Hsieh M, Li M, Sareddy GR et al..
2022. Targeting LIPA independent of its lipase activity is a therapeutic strategy in solid tumors via induction of endoplasmic reticulum stress.. Nature Cancer. 3(7):866-884.
Liu X, Viswanadhapalli S, Kumar S, Lee T-K, Moore A, Ma S, Chen L, Hsieh M, Li M, Sareddy GR et al..
2022. Targeting LIPA independent of its lipase activity is a therapeutic strategy in solid tumors via induction of endoplasmic reticulum stress.. Nature Cancer. 3(7):866-884.
Liu X, Viswanadhapalli S, Kumar S, Lee T-K, Moore A, Ma S, Chen L, Hsieh M, Li M, Sareddy GR et al..
2022. Targeting LIPA independent of its lipase activity is a therapeutic strategy in solid tumors via induction of endoplasmic reticulum stress.. Nature Cancer. 3(7):866-884.
Zhu P-P, Hung H-F, Batchenkova N, Nixon-Abell J, Henderson J, Zheng P, Renvoisé B, Pang S, C Xu S, Saalfeld S et al..
2022. Transverse endoplasmic reticulum expansion in hereditary spastic paraplegia corticospinal axons.. Human Molecular Genetics.
Zhu P-P, Hung H-F, Batchenkova N, Nixon-Abell J, Henderson J, Zheng P, Renvoisé B, Pang S, C Xu S, Saalfeld S et al..
2022. Transverse endoplasmic reticulum expansion in hereditary spastic paraplegia corticospinal axons.. Human Molecular Genetics. 31(16):2779-2795.
2021
Govind AP, Jeyifous O, Russell TA, Yi Z, Weigel AV, Ramaprasad A, Newell L, Ramos W, Valbuena FM, Casler JC et al..
2021. Activity-dependent Golgi satellite formation in dendrites reshapes the neuronal surface glycoproteome. bioRxiv.
Govind AP, Jeyifous O, Russell TA, Yi Z, Weigel AV, Ramaprasad A, Newell L, Ramos W, Valbuena FM, Casler JC et al..
2021. Activity-dependent Golgi satellite formation in dendrites reshapes the neuronal surface glycoproteome. bioRxiv.
Govind AP, Jeyifous O, Russell TA, Yi Z, Weigel AV, Ramaprasad A, Newell L, Ramos W, Valbuena FM, Casler JC et al..
2021. Activity-dependent Golgi satellite formation in dendrites reshapes the neuronal surface glycoproteome. bioRxiv.
Govind AP, Jeyifous O, Russell TA, Yi Z, Weigel AV, Ramaprasad A, Newell L, Ramos W, Valbuena FM, Casler JC et al..
2021. Activity-dependent Golgi satellite formation in dendrites reshapes the neuronal surface glycoproteome.. eLife. 10
Govind AP, Jeyifous O, Russell TA, Yi Z, Weigel AV, Ramaprasad A, Newell L, Ramos W, Valbuena FM, Casler JC et al..
2021. Activity-dependent Golgi satellite formation in dendrites reshapes the neuronal surface glycoproteome.. eLife. 10
Govind AP, Jeyifous O, Russell TA, Yi Z, Weigel AV, Ramaprasad A, Newell L, Ramos W, Valbuena FM, Casler JC et al..
2021. Activity-dependent Golgi satellite formation in dendrites reshapes the neuronal surface glycoproteome.. eLife. 10
Rodríguez C, Chen A, Rivera JA, Mohr MA, liang Y, Sun W, Milkie DE, Bifano TG, Chen X, Ji N.
2021. An adaptive optics module for deep tissue multiphoton imaging in vivo. Nature Methods. :1259-64.