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- 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
Journal Article
Modi MN, Shuai Y, Turner GC.
2020. The Drosophila mushroom body: From architecture to algorithm in a learning circuit.. Annual Review of Neuroscience. 43:465-484.
Neufeld TP, Rubin GM.
1994. The Drosophila peanut gene is required for cytokinesis and encodes a protein similar to yeast putative bud neck filament proteins.. Cell. 77(3):371-9.
Ni J-Q, Liu L-P, Binari R, Hardy R, Shim H-S, Cavallaro A, Booker M, Pfeiffer BD, Markstein M, Wang H et al..
2009. A Drosophila resource of transgenic RNAi lines for neurogenetics.. Genetics. 182(4):1089-100.
Ditch LM, Shirangi T, Pitman JL, Latham KL, Finley KD, Edeen PT, Taylor BJ, McKeown M.
2005. Drosophila retained/dead ringer is necessary for neuronal pathfinding, female receptivity and repression of fruitless independent male courtship behaviors.. Development. 132:155-64.
Pogodalla N, Kranenburg H, Rey S, Rodrigues S, Cardona A, Klämbt C.
2021. Drosophila ß-Spectrin is required in polarized ensheathing glia that form a diffusion-barrier around the neuropil.. Nature Communications. 12(1):6357.
DeSalvo MK, Hindle SJ, Rusan ZM, Orng S, Eddison M, Halliwill K, Bainton RJ.
2014. The Drosophila surface glia transcriptome: evolutionary conserved blood-brain barrier processes.. Frontiers in Neuroscience. 8:346.
King I, Tsai LT-Y, Pflanz R, Voigt A, Lee S, Jäckle H, Lu B, Heberlein U.
2011. Drosophila tao controls mushroom body development and ethanol-stimulated behavior through par-1.. The Journal of Neuroscience: The Official Journal of the Society for Neuroscience. 31(3):1139-48.
Chun C, Biswas T, Bhandawat V.
2021. Drosophila uses a tripod gait across all walking speeds, and the geometry of the tripod is important for speed control.. eLife. 10
Wu S, Guo C, Zhao H, Sun M, Chen J, Han C, Peng Q, Qiao H, Peng P, Liu Y et al..
2019. Drosulfakinin signaling in fruitless circuitry antagonizes P1 neurons to regulate sexual arousal in Drosophila.. Nature Communications. 10(1):4770.
Mitra K, Rikhy R, Lilly M, Lippincott-Schwartz J.
2012. DRP1-dependent mitochondrial fission initiates follicle cell differentiation during Drosophila oogenesis.. The Journal of cell biology. 197(4):487-97.
Rothenfluh A, Heberlein U.
2002. Drugs, flies, and videotape: the effects of ethanol and cocaine on Drosophila locomotion.. Current Opinion in Neurobiology. 12(6):639-45.
Zhou H, Kaplan T, Li Y, Grubisic I, Zhang Z, P Wang J, Eisen MB, Tjian R.
2013. Dual functions of TAF7L in adipocyte differentiation.. eLife. 2:e00170.
Del Bonis-O'Donnell JT, Page RH, Beyene AG, Tindall EG, McFarlane IR, Landry MP.
2017. Dual near-Infrared two-photon microscopy for deep-tissue dopamine nanosensor imaging.. Advanced Functional Materials. 27(39):1702112.
Espinosa-Medina I, Jevans B, Boismoreau F, Chettouh Z, Enomoto H, Müller T, Birchmeier C, Burns AJ, Brunet J-F.
2017. Dual origin of enteric neurons in vagal Schwann cell precursors and the sympathetic neural crest. Proceedings of the National Academy of Sciences. 114:11980-11985.
Hooks BM, Lin JY, Guo C, Svoboda K.
2015. Dual-channel circuit mapping reveals sensorimotor convergence in the primary motor cortex.. The Journal of Neuroscience. 35(10):4418-26.
Shroff H, Galbraith CG, Galbraith JA, White H, Gillette J, Olenych S, Davidson MW, Betzig E.
2007. Dual-color superresolution imaging of genetically expressed probes within individual adhesion complexes. (With commentary). Proceedings of the National Academy of Sciences of the United States of America. 104:20308-13.
Wilson ACC, Dunbar HE, Davis GK, Hunter WB, Stern DL, Moran NA.
2006. A dual-genome microarray for the pea aphid, Acyrthosiphon pisum, and its obligate bacterial symbiont, Buchnera aphidicola.. BMC Genomics. 7:50.
Takasaki KT, Tsyboulski D, Waters J.
2019. Dual-plane 3-photon microscopy with remote focusing.. Biomedical Optics Express. 10(11):5585-5599.
Katz WT, Plaza SM.
2019. DVID: Distributed versioned image-oriented dataservice.. Frontiers in Neural Circuits. 13(5)
Kim JMin, Carcamo CC, Jazani S, Xie Z, Feng XA, Poyton M, Holland KL, Grimm JB, Lavis LD, Ha T et al..
2024. Dynamic 1D Search and Processive Nucleosome Translocations by RSC and ISW2 Chromatin Remodelers. eLife.
Huang Y-C, Chen H-C, Lin Y-T, Lin S-T, Zheng Q, Abdelfattah AS, Lavis LD, Schreiter ER, Lin B-J, Chen T-W.
2024. Dynamic assemblies of parvalbumin interneurons in brain oscillations.. Neuron.
Fowler A, Menon V, Heard NA.
2013. Dynamic Bayesian clustering.. Journal of bioinformatics and computational biology. 11(5):1342001.
Ji N, Shen Y-R.
2005. A dynamic coupling model for sum frequency chiral response from liquids composed of molecules with a chiral side chain and an achiral chromophore.. Journal of the American Chemical Society. 127(37):12933-42.
Vaxenburg R, Wyche I, Svoboda K, Efros AL, Hires SAndrew.
2018. Dynamic cues for whisker-based object localization: An analytical solution to vibration during active whisker touch.. PLoS Computational Biology. 14(3):e1006032.
Xie L, Torigoe SE, Xiao J, Mai DH, Li L, Davis FP, Dong P, Marie-Nelly H, Grimm J, Lavis L et al..
2017. A dynamic interplay of enhancer elements regulates Klf4 expression in naïve pluripotency.. Genes & Development. 31(17):1795-1808.