Light is the most important environmental cue to entrain the circadian clock in most animals. In the fruit fly Drosophila melanogaster, the light entrainment mechanisms of the clock have been well-studied. The Drosophila brain contains approximately 150 neurons that rhythmically express circadian clock genes. These neurons are called “clock neurons” and control behavioral activity rhythms. Many clock neurons express the Cryptochrome (CRY) protein, which is sensitive to UV and blue light, and thus enables clock neurons deep in the brain to directly perceive light. In addition to the CRY protein, external photoreceptors in the Drosophila eyes play an important role in circadian light-input pathways. Recent studies have provided new insights i...
The fruit fly, Drosophila melanogaster, shows a bimodal circadian activity rhythm with peaks around ...
SummaryCircadian clocks in the brain are organized as coupled oscillators that integrate seasonal cu...
The fruit fly, Drosophila melanogaster, shows a bimodal circadian activity rhythm with peaks around ...
AbstractCircadian rhythms are entrained by light to follow the daily solar cycle. We show that Droso...
AbstractBackground: The circadian clock of Drosophila is able to drive behavioral rhythms for many w...
In Drosophila, naturally the circadian clock is entrained by environmental light-dark cycles. Photor...
Daily rhythms in behavior, physiology and metabolism are controlled by endogenous circadian clocks. ...
Daily fluctuations in light and temperature act as environmental cues for synchronising circadian cl...
Animals partition their daily activity rhythms through their internal circadian clocks, which are sy...
Recent research in Drosophila and in mammals has generated fascinating new models for how circadian ...
Circadian rhythms in physiology and behavior have near 24-hour periodicities that must adjust to the...
Animal circadian clocks are based on multiple oscillators whose interactions allow the daily control...
Daily rhythms in behavior, physiology and metabolism are controlled by endogenous circadian clocks. ...
Animal circadian clocks are based on multiple oscillators whose interactions allow the daily control...
The fruit fly, Drosophila melanogaster, shows a bimodal circadian activity rhythm with peaks around ...
The fruit fly, Drosophila melanogaster, shows a bimodal circadian activity rhythm with peaks around ...
SummaryCircadian clocks in the brain are organized as coupled oscillators that integrate seasonal cu...
The fruit fly, Drosophila melanogaster, shows a bimodal circadian activity rhythm with peaks around ...
AbstractCircadian rhythms are entrained by light to follow the daily solar cycle. We show that Droso...
AbstractBackground: The circadian clock of Drosophila is able to drive behavioral rhythms for many w...
In Drosophila, naturally the circadian clock is entrained by environmental light-dark cycles. Photor...
Daily rhythms in behavior, physiology and metabolism are controlled by endogenous circadian clocks. ...
Daily fluctuations in light and temperature act as environmental cues for synchronising circadian cl...
Animals partition their daily activity rhythms through their internal circadian clocks, which are sy...
Recent research in Drosophila and in mammals has generated fascinating new models for how circadian ...
Circadian rhythms in physiology and behavior have near 24-hour periodicities that must adjust to the...
Animal circadian clocks are based on multiple oscillators whose interactions allow the daily control...
Daily rhythms in behavior, physiology and metabolism are controlled by endogenous circadian clocks. ...
Animal circadian clocks are based on multiple oscillators whose interactions allow the daily control...
The fruit fly, Drosophila melanogaster, shows a bimodal circadian activity rhythm with peaks around ...
The fruit fly, Drosophila melanogaster, shows a bimodal circadian activity rhythm with peaks around ...
SummaryCircadian clocks in the brain are organized as coupled oscillators that integrate seasonal cu...
The fruit fly, Drosophila melanogaster, shows a bimodal circadian activity rhythm with peaks around ...