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Main Menu - Block
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Project Teams:
- Overview
- Anatomy and Histology
- Cryo-Electron Microscopy
- Electron Microscopy
- Flow Cytometry
- Gene Targeting and Transgenics
- Immortalized Cell Line Culture
- Integrative Imaging
- Invertebrate Shared Resource
- Janelia Experimental Technology
- Mass Spectrometry
- Media Prep
- Molecular Genomics
- Primary & iPS Cell Culture
- Project Pipeline Support
- Project Technical Resources
- Quantitative Genomics
- Scientific Computing Software
- Scientific Computing Systems
- Viral Tools
- Vivarium
Export 2027 results:
Author Title Type [ Year
Filters: First Letter Of Last Name is C [Clear All Filters]
2017
Stern DL, Crocker J, Ding Y, Frankel N, Kappes G, Kim E, Kuzmickas R, Lemire A, Mast JD, Picard S.
2017. Genetic and transgenic reagents for Drosophila simulans, D. mauritiana, D. yakuba, D. santomea and D. virilis.. G3 (Bethesda, Md.). 7(4):1339-47.
Dionne H, Hibbard KL, Cavallaro A, Kao J-C, Rubin GM.
2017. Genetic reagents for making split-GAL4 lines in Drosophila.. Genetics . 209(1):31-5.
Baumann AA, Texada MJ, Chen H-M, Etheredge JN, Miller DL, Picard S, Warner RD, Truman JW, Riddiford LM.
2017. Genetic tools to study juvenile hormone action in Drosophila.. Scientific Reports. 7:2132.
Dufault-Thompson K, Jian H, Cheng R, Li J, Wang F, Zhang Y.
2017. A Genome-Scale Model of Simulates Mechanisms of Metabolic Diversity and Energy Conservation.. mSystems. 2(2)
Pak AJ, Grime JMA, Sengupta P, Chen AK, Durumeric AEP, Srivastava A, Yeager M, Briggs JAG, Lippincott-Schwartz J, Voth GA.
2017. Immature HIV-1 lattice assembly dynamics are regulated by scaffolding from nucleic acid and the plasma membrane.. Proceedings of the National Academy of Sciences of the United States of America. 114(47):E10056-65.
Aguilera-Castrejon A, Pasantes-Morales H, Montesinos JJose, Cortés-Medina LV, Castro-Manrreza ME, Mayani H, Ramos-Mandujano G.
2017. Improved Proliferative Capacity of NP-Like Cells Derived from Human Mesenchymal Stromal Cells and Neuronal Transdifferentiation by Small Molecules.. Neurochem Res. 42(2):415-427.
Aguilera-Castrejon A, Pasantes-Morales H, Montesinos JJose, Cortés-Medina LV, Castro-Manrreza ME, Mayani H, Ramos-Mandujano G.
2017. Improved Proliferative Capacity of NP-Like Cells Derived from Human Mesenchymal Stromal Cells and Neuronal Transdifferentiation by Small Molecules.. Neurochem Res. 42(2):415-427.
Cembrowski MS, Spruston N.
2017. Integrating Results across Methodologies Is Essential for Producing Robust Neuronal Taxonomies.. Neuron. 94(4):747-751.e1.
Hu S, Dasbiswas K, Guo Z, Tee Y-H, Thiagarajan V, Hersen P, Chew T-L, Safran SA, Zaidel-Bar R, Bershadsky AD.
2017. Long-range self-organization of cytoskeletal myosin II filament stacks.. Nature Cell Biology. 19(2):133-41.
Hughes MP, Sawaya MR, Goldschmidt L, Rodriguez JA, Cascio D, Gonen T, Eisenberg DS.
2017. Low-complexity domains adhere by reversible amyloid-like interactions between kinked β-sheets.. bioRxiv.
Chen T-W, Li N, Daie K, Svoboda K.
2017. A map of anticipatory activity in mouse motor cortex.. Neuron. 94(4):866-879.e4.
Robie AA, Hirokawa J, Edwards AW, Umayam LA, Lee A, Phillips ML, Card GM, Korff W, Rubin GM, Simpson JH et al..
2017. Mapping the neural substrates of behavior.. Cell. 170(2):393-406.
Stefan CJ, Trimble WS, Grinstein S, Drin G, Reinisch K, De Camilli P, Cohen S, Valm AM, Lippincott-Schwartz J, Levine TP et al..
2017. Membrane dynamics and organelle biogenesis-lipid pipelines and vesicular carriers.. BMC Biology. 15(1):102.
Singer AC, Franzesi GTalei, Kodandaramaiah SB, Flores FJ, Cohen JD, Lee AK, Börgers C, Forest CR, Kopell NJ, Boyden ES.
2017. Mesoscale-duration activated states gate spiking in response to fast rises in membrane voltage in the awake brain.. Journal of Neurophysiology. 118(2):1270-91.
Vergara S, Lukes DA, Martynowycz MW, Santiago U, Plascencia-Villa G, Weiss SC, de la Cruz MJason, Black DM, Alvarez MM, Lopez-Lozano X et al..
2017. MicroED structure of Au146(p-MBA)57 at subatomic resolution reveals a twinned FCC cluster.. Journal of Physical Chemistry Letters. 8(5523-30):arXiv:1706.07902[physics.atm-clus].
Martynowycz M, Glynn C, Miao J, de la Cruz MJason, Hattne J, Shi D, Cascio D, Rodriguez J, Gonen T.
2017. MicroED structures from micrometer thick protein crystals.. bioRxiv.
Aitchison L, Russell L, Packer AM, Yan J, Castonguaye P, Häusser M, Turaga SC.
2017. Model-based Bayesian inference of neural activity and connectivity from all-optical interrogation of a neural circuit.. 31st Conference on Neural Information Processing Systems (NIPS 2017).
Aitchison L, Russell L, Packer AM, Yan J, Castonguay P, Häusser M, Turaga SC.
2017. Model-based Bayesian inference of neural activity and connectivity from all-optical interrogation of a neural circuit. Advances in Neural Information Processing Systems.
Matsubayashi Y, Louani A, Dragu A, Sánchez-Sánchez BJ, Serna-Morales E, Yolland L, Gyoergy A, Vizcay G, Fleck RA, Heddleston JM et al..
2017. A moving source of matrix components is essential for de novo basement membrane formation.. Current Biology : CB. 27(22):3526-34.
Beier T, Pape C, Rahaman N, Prange T, Berg S, Bock DD, Cardona A, Knott GW, Plaza SM, Scheffer LK et al..
2017. Multicut brings automated neurite segmentation closer to human performance.. Nature Methods. 14(2):101-102.
Kieffer-Kwon K-R, Nimura K, Rao SSP, Xu J, Jung S, Pekowska A, Dose M, Stevens E, Mathe E, Dong P et al..
2017. Myc Regulates Chromatin Decompaction and Nuclear Architecture during B Cell Activation.. Molecular Cell. 67(4):566-78.
Kieffer-Kwon K-R, Nimura K, Rao SSP, Xu J, Jung S, Pekowska A, Dose M, Stevens E, Mathe E, Dong P et al..
2017. Myc Regulates Chromatin Decompaction and Nuclear Architecture during B Cell Activation.. Molecular Cell. 67(4):566-78.
Kieffer-Kwon K-R, Nimura K, Rao SSP, Xu J, Jung S, Pekowska A, Dose M, Stevens E, Mathe E, Dong P et al..
2017. Myc Regulates Chromatin Decompaction and Nuclear Architecture during B Cell Activation.. Molecular Cell. 67(4):566-78.
Zeytuni N, Hong C, Flanagan KA, Worrall LJ, Theiltges KA, Vuckovic M, Huang RK, Massoni SC, Camp AH, Yu Z et al..
2017. Near-atomic resolution cryoelectron microscopy structure of the 30-fold homooligomeric SpoIIIAG channel essential to spore formation in Bacillus subtilis.. Proceedings of the National Academy of Sciences of the United States of America.