scholarly article | Q13442814 |
P356 | DOI | 10.1038/NPROT.2017.096 |
P2888 | exact match | https://scigraph.springernature.com/pub.10.1038/nprot.2017.096 |
P932 | PMC publication ID | 5812262 |
P698 | PubMed publication ID | 29022943 |
P50 | author | Jin Hong Park | Q56985925 |
Robert Huber | Q89612321 | ||
P2093 | author name string | William W Ja | |
Keith R Murphy | |||
P2860 | cites work | Re-patterning sleep architecture in Drosophila through gustatory perception and nutritional quality | Q21144919 |
Clock and cycle limit starvation-induced sleep loss in Drosophila | Q24623144 | ||
Sleep Facilitates Memory by Blocking Dopamine Neuron-Mediated Forgetting | Q27322683 | ||
Dietary modulation of Drosophila sleep-wake behaviour | Q28475063 | ||
Brief communication: Sleep curtailment in healthy young men is associated with decreased leptin levels, elevated ghrelin levels, and increased hunger and appetite | Q29615447 | ||
How deeply does your mutant sleep? Probing arousal to better understand sleep defects in Drosophila | Q30620380 | ||
Quantifying Drosophila food intake: comparative analysis of current methodology | Q33560845 | ||
Relationships among dietary nutrients and subjective sleep, objective sleep, and napping in women | Q33643150 | ||
Inducing sleep by remote control facilitates memory consolidation in Drosophila | Q33781711 | ||
FLIC: high-throughput, continuous analysis of feeding behaviors in Drosophila | Q33825607 | ||
Automated monitoring and quantitative analysis of feeding behaviour in Drosophila. | Q34086425 | ||
Stress response genes protect against lethal effects of sleep deprivation in Drosophila | Q34128865 | ||
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High-resolution positional tracking for long-term analysis of Drosophila sleep and locomotion using the "tracker" program | Q34277894 | ||
Regulation of feeding and metabolism by neuronal and peripheral clocks in Drosophila | Q34657316 | ||
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Sleep deprivation of rats: the hyperphagic response is real. | Q36800590 | ||
A dynamic deep sleep stage in Drosophila | Q36894927 | ||
Sleep and wakefulness in Drosophila melanogaster | Q37203830 | ||
Water- and nutrient-dependent effects of dietary restriction on Drosophila lifespan. | Q37413524 | ||
Postprandial sleep mechanics in Drosophila. | Q37429733 | ||
The Drosophila circuitry of sleep-wake regulation | Q39213889 | ||
A Taste Circuit that Regulates Ingestion by Integrating Food and Hunger Signals | Q41253350 | ||
JAABA: interactive machine learning for automatic annotation of animal behavior | Q43420134 | ||
Locomotor activity level monitoring using the Drosophila Activity Monitoring (DAM) System | Q44111050 | ||
Video tracking and analysis of sleep in Drosophila melanogaster | Q47845049 | ||
Laboratory studies of the effects of carbohydrate consumption on wakefulness. | Q48723935 | ||
Correlates of sleep and waking in Drosophila melanogaster. | Q48729010 | ||
Rest in Drosophila is a sleep-like state. | Q48729018 | ||
Electrographic patterns of postprandial sleep after food deprivation or intraventricular adrenaline injections in pigeons. | Q48784330 | ||
Influences of fat and carbohydrate on postprandial sleepiness, mood, and hormones. | Q51103989 | ||
Starvation and human slow-wave sleep. | Q54426446 | ||
P433 | issue | 11 | |
P304 | page(s) | 2355-2366 | |
P577 | publication date | 2017-10-12 | |
P1433 | published in | Nature Protocols | Q3337109 |
P1476 | title | Simultaneous measurement of sleep and feeding in individual Drosophila | |
P478 | volume | 12 |
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Q90068000 | A subset of brain neurons controls regurgitation in adult Drosophila melanogaster |
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Q92021406 | Intellectual disability and autism spectrum disorders 'on the fly': insights from Drosophila |
Q64951448 | optoPAD, a closed-loop optogenetics system to study the circuit basis of feeding behaviors. |
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