scholarly article | Q13442814 |
P6179 | Dimensions Publication ID | 1106141311 |
P356 | DOI | 10.1186/S13064-018-0116-7 |
P932 | PMC publication ID | 6090720 |
P698 | PubMed publication ID | 30103787 |
P2093 | author name string | Kai Zinn | |
Bader Al-Anzi | |||
P2860 | cites work | From fat fruit fly to human obesity | Q26822877 |
Three Dopamine Pathways Induce Aversive Odor Memories with Different Stability | Q27333312 | ||
Quantification of food intake in Drosophila | Q28475659 | ||
The neuronal architecture of the mushroom body provides a logic for associative learning | Q30408443 | ||
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Small molecule drug screening in Drosophila identifies the 5HT2A receptor as a feeding modulation target | Q30541089 | ||
Altered electrical properties in Drosophila neurons developing without synaptic transmission. | Q32061987 | ||
Colorimetric Measurement of Triglycerides Cannot Provide an Accurate Measure of Stored Fat Content in Drosophila | Q33680075 | ||
Phenotypic plasticity across 50MY of evolution: drosophila wing size and temperature | Q33712304 | ||
Drosophila insulin-producing cells are differentially modulated by serotonin and octopamine receptors and affect social behavior | Q33748711 | ||
A role for S6 kinase and serotonin in postmating dietary switch and balance of nutrients in D. melanogaster | Q33912474 | ||
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Drosophila Brainbow: a recombinase-based fluorescence labeling technique to subdivide neural expression patterns | Q34162915 | ||
Mushroom body output neurons encode valence and guide memory-based action selection in Drosophila | Q34753487 | ||
Distinct dopamine neurons mediate reward signals for short- and long-term memories | Q34985552 | ||
A single pair of neurons links sleep to memory consolidation in Drosophila melanogaster | Q35008213 | ||
Sweet taste and nutrient value subdivide rewarding dopaminergic neurons in Drosophila | Q35213480 | ||
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A GAL4-driver line resource for Drosophila neurobiology | Q36447352 | ||
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The neurobiology of food intake in an obesogenic environment | Q36744230 | ||
Electrical hyperexcitation of lateral ventral pacemaker neurons desynchronizes downstream circadian oscillators in the fly circadian circuit and induces multiple behavioral periods | Q37002209 | ||
Bursicon functions within the Drosophila CNS to modulate wing expansion behavior, hormone secretion, and cell death | Q37156370 | ||
An internal thermal sensor controlling temperature preference in Drosophila | Q37315790 | ||
PDF cells are a GABA-responsive wake-promoting component of the Drosophila sleep circuit | Q37325048 | ||
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The lateral hypothalamus as integrator of metabolic and environmental needs: From electrical self-stimulation to opto-genetics | Q37872943 | ||
Synaptic plasticity in neuronal circuits regulating energy balance | Q38046072 | ||
Modeling Obesity and Its Associated Disorders inDrosophila | Q38086043 | ||
Gustatory processing and taste memory in Drosophila | Q38437486 | ||
Neuronal Regulation of Energy Homeostasis: Beyond the Hypothalamus and Feeding | Q38646676 | ||
What can tiny mushrooms in fruit flies tell us about learning and memory? | Q38797208 | ||
Genes and neural circuits for sleep of the fruit fly. | Q38822246 | ||
The mushroom body of adult Drosophila characterized by GAL4 drivers | Q39869186 | ||
Identified Serotonin-Releasing Neurons Induce Behavioral Quiescence and Suppress Mating in Drosophila. | Q40532171 | ||
Genetics of fat storage in flies and worms: what went wrong? | Q40740274 | ||
Serotonin and insulin-like peptides modulate leucokinin-producing neurons that affect feeding and water homeostasis in Drosophila | Q41319894 | ||
The leucokinin pathway and its neurons regulate meal size in Drosophila | Q41875263 | ||
Insulin-producing cells in the brain of adult Drosophila are regulated by the serotonin 5-HT1A receptor | Q41976441 | ||
Sex peptide receptor and neuronal TOR/S6K signaling modulate nutrient balancing in Drosophila. | Q43062822 | ||
Targeted gene expression in Drosophila dopaminergic cells using regulatory sequences from tyrosine hydroxylase | Q44295075 | ||
Tissue-specific developmental requirements of Drosophila tyrosine hydroxylase isoforms | Q44364488 | ||
An octopamine-mushroom body circuit modulates the formation of anesthesia-resistant memory in Drosophila | Q45845211 | ||
Multiple memory traces for olfactory reward learning in Drosophila. | Q46956765 | ||
The amnesiac gene product is expressed in two neurons in the Drosophila brain that are critical for memory | Q47072034 | ||
Ingestion of artificial sweeteners leads to caloric frustration memory in Drosophila | Q47141496 | ||
SIFamide Translates Hunger Signals into Appetitive and Feeding Behavior in Drosophila. | Q47203620 | ||
A subset of dopamine neurons signals reward for odour memory in Drosophila | Q47973330 | ||
Two Parallel Pathways Assign Opposing Odor Valences during Drosophila Memory Formation | Q50421549 | ||
Feeding, fecundity and lifespan in female Drosophila melanogaster | Q51705369 | ||
Neuronal assemblies of the Drosophila mushroom body | Q51960163 | ||
Fiber Number in the Mushroom Bodies of AdultDrosophila melanogasterdepends on Age, Sex and Experience | Q52514384 | ||
Drosophila mushroom bodies integrate hunger and satiety signals to control innate food-seeking behavior. | Q53432857 | ||
P433 | issue | 1 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 18 | |
P577 | publication date | 2018-08-13 | |
P1433 | published in | Neural Development | Q15761981 |
P1476 | title | Identification and characterization of mushroom body neurons that regulate fat storage in Drosophila | |
P478 | volume | 13 |
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