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1. Bio-inspired circular latent spaces to estimate objects’ rotations.

2. Bio-inspired circular latent spaces to estimate objects' rotations

3. Subtype-Specific Roles of Ellipsoid Body Ring Neurons in Sleep Regulation in Drosophila.

4. Recurrent Circuitry for Balancing Sleep Need and Sleep.

5. Visual Input to the Drosophila Central Complex by Developmentally and Functionally Distinct Neuronal Populations

6. Circadian programming of the ellipsoid body sleep homeostat in Drosophila

8. Normal Ethanol Sensitivity and Rapid Tolerance Require the G Protein Receptor Kinase 2 in Ellipsoid Body Neurons in Drosophila.

9. Lineage-specific determination of ring neuron circuitry in the central complex of Drosophila

10. CCB is Involved in Actin-Based Axonal Transport of Selected Synaptic Proteins.

11. Neuronal Constituents and Putative Interactions Within the Drosophila Ellipsoid Body Neuropil

13. Neuronal Constituents and Putative Interactions Within the Drosophila Ellipsoid Body Neuropil.

14. Ellipsoid Body and Medulla Defects and Locomotion Disturbances in sbr (small bristles) Mutants of Drosophila melanogaster.

15. In silico Interrogation of Insect Central Complex Suggests Computational Roles for the Ellipsoid Body in Spatial Navigation

16. The laminar organization of the Drosophila ellipsoid body is semaphorin-dependent and prevents the formation of ectopic synaptic connections

17. The evolution of honey bee dance communication: a mechanistic perspective.

18. In silico Interrogation of Insect Central Complex Suggests Computational Roles for the Ellipsoid Body in Spatial Navigation.

19. Ring Attractor Dynamics Emerge from a Spiking Model of the Entire Protocerebral Bridge.

20. Normal Ethanol Sensitivity and Rapid Tolerance Require the G Protein Receptor Kinase 2 in Ellipsoid Body Neurons inDrosophila

21. Analysis of the Neural and Glial Lineages Establishing the Cytoarchitecure of the Drosophila melanogaster Central Brain

22. Subtype-Specific Roles of Ellipsoid Body Ring Neurons in Sleep Regulation in Drosophila .

23. Neuroarchitecture and neuroanatomy of the Drosophila central complex: A GAL4-based dissection of protocerebral bridge neurons and circuits.

24. Spatio-temporal in vivo recording of dCREB2 dynamics in Drosophila long-term memory processing.

25. Daily rhythms in locomotor circuits in Drosophila involve PDF.

26. Functional Mapping of the Neuronal Substrates for Drug Tolerance in Drosophila.

27. Drosophila highwire gene modulates acute ethanol sensitivity in the nervous system.

28. Serotonin receptor activity is necessary for olfactory learning and memory in Drosophila melanogaster

29. Coordination through Inhibition: Control of Stabilizing and Updating Circuits in Spatial Orientation Working Memory

30. Oviposition preference for and positional avoidance. of acetic acid provide a model for competing behavioral drives in Drosophila.

31. Drosophila Homer Is Required in a Small Set of Neurons Including the Ellipsoid Body for Normal Ethanol Sensitivity and Tolerance.

32. Expression of a D1 dopamine receptor dDA1/DmDOP1 in the central nervous system of Drosophila melanogaster

33. Sleep: Helicon Cells Charge the Circuit

34. Lineage-specific determination of ring neuron circuitry in the central complex of Drosophila

35. Circadian programming of the ellipsoid body sleep homeostat in Drosophila .

36. Coordination through Inhibition: Control of Stabilizing and Updating Circuits in Spatial Orientation Working Memory.

37. The laminar organization of the Drosophila ellipsoid body is semaphorin-dependent and prevents the formation of ectopic synaptic connections

38. Ring Attractor Dynamics Emerge from a Spiking Model of the Entire Protocerebral Bridge

39. Neuroarchitecture and neuroanatomy of theDrosophilacentral complex: A GAL4‐based dissection of protocerebral bridge neurons and circuits

40. Inverse Control of Turning Behavior by Dopamine D1 Receptor Signaling in Columnar and Ring Neurons of the Central Complex in Drosophila

41. A Neural Network for Wind-Guided Compass Navigation.

42. A Feedforward Circuit Regulates Action Selection of Pre-mating Courtship Behavior in Female Drosophila.

43. Daily rhythms in locomotor circuits in Drosophila involve PDF

44. A Serotonin-Modulated Circuit Controls Sleep Architecture to Regulate Cognitive Function Independent of Total Sleep in Drosophila.

45. Network-Specific Synchronization of Electrical Slow-Wave Oscillations Regulates Sleep Drive in Drosophila.

46. Inverse Control of Turning Behavior by Dopamine D1 Receptor Signaling in Columnar and Ring Neurons of the Central Complex in Drosophila.

49. Lineage-specific determination of ring neuron circuitry in the central complex of Drosophila .

50. A Wake-Promoting Circadian Output Circuit in Drosophila.

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