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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
- High Performance Computing
- Immortalized Cell Line Culture
- Integrative Imaging
- Invertebrate Shared Resource
- Janelia Experimental Technology
- Mass Spectrometry
- Media Prep
- Molecular Genomics
- Stem Cell & Primary Culture
- Project Pipeline Support
- Project Technical Resources
- Quantitative Genomics
- Scientific Computing
- Viral Tools
- Vivarium
Export 1591 results:
Author Title Type [ Year
] Filters: First Letter Of Last Name is G [Clear All Filters]
2016
Dana H, Mohar B, Sun Y, Narayan S, Gordus A, Hasseman JP, Tsegaye G, Holt GT, Hu A, Walpita D et al..
2016. Sensitive red protein calcium indicators for imaging neural activity.. eLife. 5
Ellis EM, Gauvain G, Sivyer B, Murphy GJ.
2016. Shared and distinct retinal input to the mouse superior colliculus and dorsal lateral geniculate nucleus.. Journal of Neurophysiology. 116(2):602-10.
Pnevmatikakis EA, Soudry D, Gao Y, Machado TA, Merel J, Pfau D, Reardon T, Mu Y, Lacefield C, Yang W et al..
2016. Simultaneous denoising, deconvolution, and demixing of calcium imaging data.. Neuron. 89(2):285-99.
Gerson-Gurwitz A, Wang S, Sathe S, Green R, Yeo GW, Oegema K, Desai A.
2016. A Small RNA-Catalytic Argonaute Pathway Tunes Germline Transcript Levels to Ensure Embryonic Divisions. Cell. 165:396-409.
Gerson-Gurwitz A, Wang S, Sathe S, Green R, Yeo GW, Oegema K, Desai A.
2016. A Small RNA-Catalytic Argonaute Pathway Tunes Germline Transcript Levels to Ensure Embryonic Divisions. Cell. 165:396-409.
Swinstead EE, Miranda TB, Paakinaho V, Baek S, Goldstein I, Hawkins M, Karpova TS, Ball D, Mazza D, Lavis LD et al..
2016. Steroid receptors reprogram FoxA1 occupancy through dynamic chromatin transitions.. Cell.
Swinstead EE, Miranda TB, Paakinaho V, Baek S, Goldstein I, Hawkins M, Karpova TS, Ball D, Mazza D, Lavis LD et al..
2016. Steroid receptors reprogram FoxA1 occupancy through dynamic chromatin transitions.. Cell.
Swinstead EE, Miranda TB, Paakinaho V, Baek S, Goldstein I, Hawkins M, Karpova TS, Ball D, Mazza D, Lavis LD et al..
2016. Steroid receptors reprogram FoxA1 occupancy through dynamic chromatin transitions.. Cell.
Laxmikanthan G, Xu C, Brilot AF, Warren D, Steele L, Seah N, Tong W, Grigorieff N, Landy A, Van Duyne GD.
2016. Structure of a Holliday junction complex reveals mechanisms governing a highly regulated DNA transaction.. eLife. 5
Oldham ML, Grigorieff N, Chen J.
2016. Structure of the transporter associated with antigen processing trapped by herpes simplex virus.. eLife. 5
D Tervo G, Tenenbaum JB, Gershman SJ.
2016. Toward the neural implementation of structure learning.. Current Opinion in Neurobiology. 37:99-105.
Guo Y, Wang Y, Zhang W, Meltzer S, Zanini D, Yu Y, Li J, Cheng T, Guo Z, Wang Q et al..
2016. Transmembrane channel-like (tmc) gene regulates Drosophila larval locomotion.. Proc Natl Acad Sci U S A. 113(26):7243-8.
Guo Y, Wang Y, Zhang W, Meltzer S, Zanini D, Yu Y, Li J, Cheng T, Guo Z, Wang Q et al..
2016. Transmembrane channel-like (tmc) gene regulates Drosophila larval locomotion.. Proc Natl Acad Sci U S A. 113(26):7243-8.
Guo Y, Wang Y, Zhang W, Meltzer S, Zanini D, Yu Y, Li J, Cheng T, Guo Z, Wang Q et al..
2016. Transmembrane channel-like (tmc) gene regulates Drosophila larval locomotion.. Proc Natl Acad Sci U S A. 113(26):7243-8.
2017
Griffié J, Shlomovich L, Williamson DJ, Shannon M, Aaron J, Khuon S, Burn GL, Boelen L, Peters R, Cope AP et al..
2017. 3D Bayesian cluster analysis of super-resolution data reveals LAT recruitment to the T cell synapse.. Scientific Reports. 7(1):4077.
Fritz-Laylin LK, Riel-Mehan M, Chen B-C, Lord SJ, Goddard TD, Ferrin TE, Nicholson-Dykstra SM, Higgs H, Johnson GT, Betzig E et al..
2017. Actin-based protrusions of migrating neutrophils are intrinsically lamellar and facilitate direction changes.. eLife. 6
Parag T, Tschopp F, Grisaitis W, Turaga SC, Zhang X, Matejek B, Kamentsky L, Lichtman JW, Pfister H.
2017. Anisotropic EM Segmentation by 3D Affinity Learning and Agglomeration. CoRR. abs/1707.08935
Krotee P, Rodriguez JA, Sawaya MR, Cascio D, Reyes FE, Shi D, Hattne J, Nannenga BL, Oskarsson ME, Philipp S et al..
2017. Atomic structures of fibrillar segments of hIAPP suggest tightly mated β-sheets are important for cytotoxicity.. eLife. 6
Krotee P, Rodriguez JA, Sawaya MR, Cascio D, Reyes FE, Shi D, Hattne J, Nannenga BL, Oskarsson ME, Philipp S et al..
2017. Atomic structures of fibrillar segments of hIAPP suggest tightly mated β-sheets are important for cytotoxicity.. eLife. 6
Krotee P, Rodriguez JA, Sawaya MR, Cascio D, Reyes FE, Shi D, Hattne J, Nannenga BL, Oskarsson ME, Philipp S et al..
2017. Atomic structures of fibrillar segments of hIAPP suggest tightly mated β-sheets are important for cytotoxicity.. eLife. 6
M de la Cruz J, Hattne J, Shi D, Seidler P, Rodriguez J, Reyes FE, Sawaya MR, Cascio D, Weiss SC, Kim SKyung et al..
2017. Atomic-resolution structures from fragmented protein crystals with the cryoEM method MicroED.. Nature Methods. 14(4):399-402.
Bittner KC, Milstein AD, Grienberger C, Romani S, Magee JC.
2017. Behavioral time scale synaptic plasticity underlies CA1 place fields.. Science (New York, N.Y.). 357(6355):1033-1036.
