35 results on '"Poeck, Burkhard"'
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2. The Visual Orientation Memory of 'Drosophila' Requires Foraging (PKG) Upstream of Ignorant (RSK2) in Ring Neurons of the Central Complex
3. Withania somnifera Extracts Promote Resilience against Age-Related and Stress-Induced Behavioral Phenotypes in Drosophila melanogaster; a Possible Role of Other Compounds besides Withanolides
4. Octopamine mediates sugar relief from a chronic-stress-induced depression-like state in Drosophila
5. The Lethal(1) Optomotor-Blind Gene of Drosophila melanogaster is a Major Organizer of Optic Lobe Development: Isolation and Characterization of the Gene
6. Analysis of amyloid precursor protein function in Drosophila melanogaster
7. Analysis of a spatial orientation memory in Drosophila
8. Locomotor Control by the Central Complex in Drosophila—An Analysis of the tay bridge Mutant
9. m6A modulates neuronal functions and sex determination in Drosophila
10. Transcript identification in the optomotor-blind locus of Drosopbila melanogaster by intragenic recombination mapping and PCR-aided sequence analysis of lethal point mutations
11. The lethal(1)optomotor-blind gene of Drosophila melanogaster is a major organizer of optic development: isolation and characterization of the gene
12. Drosophila Acquires a Long-Lasting Body-Size Memory from Visual Feedback
13. Drosophila Full-Length Amyloid Precursor Protein Is Required for Visual Working Memory and Prevents Age-Related Memory Impairment
14. Serotonin modulates a depression-like state in Drosophila responsive to lithium treatment
15. Visual Working Memory Requires Permissive and Instructive NO/cGMP Signaling at Presynapses in the Drosophila Central Brain
16. Defective Pigment Granule Biogenesis and Aberrant Behavior Caused by Mutations in the Drosophila AP-3[Beta] Adaptin Gene ruby
17. Serum Response Factor-Mediated Gene Regulation in a Drosophila Visual Working Memory
18. m6A modulates neuronal functions and sex determination in Drosophila.
19. Analysis of amyloid precursor protein function in Drosophila melanogaster
20. Visual Targeting of Motor Actions in Climbing Drosophila
21. Neurotoxic effects induced by the Drosophila amyloid-β peptide suggest a conserved toxic function
22. Locomotor control by the central complex inDrosophila—An analysis of thetay bridge mutant
23. Glial and neuronal expression of polyglutamine proteins induce behavioral changes and aggregate formation in Drosophila
24. Drosophila JAB1/CSN5 Acts in Photoreceptor Cells to Induce Glial Cells
25. Mitochondrial Single-stranded DNA-binding Protein Is Required for Mitochondrial DNA Replication and Development inDrosophila melanogaster
26. Glial Cells Mediate Target Layer Selection of Retinal Axons in the Developing Visual System of Drosophila
27. Mutations disrupting neuronal connectivity in the Drosophila visual system
28. A homology domain shared between Drosophila optomotor-blind and mouse Brachyury is involved in DNA binding
29. Mutations in the Proximal Region of theOptomotor-BlindLocus ofDrosophila MelanogasterReveal a Gradient of Neuroanatomical and Behavioral Phenotypes
30. The visual orientation memory of Drosophilarequires Foraging (PKG) upstream of Ignorant (RSK2) in ring neurons of the central complex
31. Mutations in the Proximal Region of the Optomotor-Blind Locus of Drosophila Melanogaster Reveal a Gradient of Neuroanatomical and Behavioral Phenotypes.
32. Mitochondrial Single-stranded DNA-binding Protein Is Required for Mitochondrial DNA Replication and Development in Drosophila melanogaster
33. Expression of the Drosophila optomotor-blind gene transcript in neuronal and glial cells of the developing nervous system
34. Neurotoxic effects induced by the Drosophila amyloid-beta peptide suggest a conserved toxic function.
35. Glial and neuronal expression of polyglutamine proteins induce behavioral changes and aggregate formation in Drosophila.
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