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  • Our Research
  • Resources Hub
  • Tools & Data
  • Conferences & Workshops
  • Students & Postdocs at Janelia
Labs:
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Aguilera Castrejon Lab
Ahrens Lab
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Hess Lab
Ilanges Lab
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Johnson Lab
Karpova Lab
Keller Lab
Koay Lab
Lavis Lab
Li Lab
Lippincott-Schwartz Lab
Liu (Yin) Lab
Liu (Zhe) Lab
O'Shea Lab
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Pedram Lab
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Romani Lab
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Satou Lab
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Stringer Lab
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Tillberg Lab
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Turner Lab
Voigts Lab
Wang (Meng) Lab
Wang (Shaohe) Lab
Wong-Campos Lab
Project Teams:
CellMap
FIB-SEM Technology
Fly Descending Interneuron
Fly-eFISH
FlyEM
FlyLight
FuncEWOrm
GENIE
MouseLight
Tool Translation Team (T3)

ilastik: interactive machine learning for (bio)image analysis.

Berg S, Kutra D, Kroeger T, Straehle CN, Kausler BX, Haubold C, Schiegg M, Ales J, Beier T, Rudy M et al..  2019.  ilastik: interactive machine learning for (bio)image analysis.. Nature Methods. 16:1226-32.
  • Read more about ilastik: interactive machine learning for (bio)image analysis.
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Identification of cell types from single-cell transcriptomic data.

Shekhar K, Menon V.  2019.  Identification of cell types from single-cell transcriptomic data.. Methods in Molecular Biology. 1935:45-77.
  • Read more about Identification of cell types from single-cell transcriptomic data.
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Rational design of fluorogenic and spontaneously blinking labels for super-resolution imaging.

Zheng Q, Ayala AX, Chung I, Weigel AV, Ranjan A, Falco N, Grimm JB, Tkachuk AN, Wu C, Lippincott-Schwartz J et al..  2019.  Rational design of fluorogenic and spontaneously blinking labels for super-resolution imaging.. ACS Central Science. 5(9):1602-1613.
  • Read more about Rational design of fluorogenic and spontaneously blinking labels for super-resolution imaging.
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Learning from action: reconsidering movement signaling in midbrain dopamine neuron activity.

Coddington LT, Dudman JT.  2019.  Learning from action: reconsidering movement signaling in midbrain dopamine neuron activity.. Neuron. 104(1):63-77.
  • Read more about Learning from action: reconsidering movement signaling in midbrain dopamine neuron activity.
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Developmental organization of central neurons in the adult Drosophila ventral nervous system.

Shepherd D, Sahota V, Court R, Williams DW, Truman JW.  2019.  Developmental organization of central neurons in the adult Drosophila ventral nervous system.. Journal of Comparative Neurology. 527(15):2573-2598.
  • Read more about Developmental organization of central neurons in the adult Drosophila ventral nervous system.
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Mamo decodes hierarchical temporal gradients into terminal neuronal fate.

Liu L-Y, Long X, Yang C-P, Miyares RL, Sugino K, Singer RH, Lee T.  2019.  Mamo decodes hierarchical temporal gradients into terminal neuronal fate.. Elife. 8
  • Read more about Mamo decodes hierarchical temporal gradients into terminal neuronal fate.
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A repeated molecular architecture across thalamic pathways.

Phillips JW, Schulmann A, Hara E, Winnubst J, Liu C, Valakh V, Wang L, Shields BC, Korff W, Chandrashekar J et al..  2019.  A repeated molecular architecture across thalamic pathways.. Nature Neuroscience. 22(11):1925-35.

Publisher Correction: PMID: 31576055

  • Read more about A repeated molecular architecture across thalamic pathways.
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Genetic dissection of active forgetting in labile and consolidated memories in Drosophila.

Gao Y, Shuai Y, Zhang X, Peng Y, Wang L, He J, Zhong Y, Li Q.  2019.  Genetic dissection of active forgetting in labile and consolidated memories in Drosophila.. Proceedings of the National Academy of Sciences of the United States of America. 116(42):21191-97.
  • Read more about Genetic dissection of active forgetting in labile and consolidated memories in Drosophila.
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RNA granules hitchhike on lysosomes for long-distance transport, Using annexin A11 as a molecular tether.

Liao Y-C, Fernandopulle MS, Wang G, Choi H, Hao L, Drerup CM, Patel R, Qamar S, Nixon-Abell J, Shen Y et al..  2019.  RNA granules hitchhike on lysosomes for long-distance transport, Using annexin A11 as a molecular tether.. Cell. 179(1):147-164.e20.
  • Read more about RNA granules hitchhike on lysosomes for long-distance transport, Using annexin A11 as a molecular tether.
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Isomeric tuning yields bright and targetable red Ca indicators.

Deo C, Sheu S-H, Seo J, Clapham DE, Lavis LD.  2019.  Isomeric tuning yields bright and targetable red Ca indicators.. Journal of the American Chemical Society. 141(35):13734-13738.
  • Read more about Isomeric tuning yields bright and targetable red Ca indicators.
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