AbstractThe mechanisms and consequences of synchrony among heterogeneous oscillators are poorly understood in biological systems. We present a multicellular, molecular model of the mammalian circadian clock that incorporates recent data implicating the neurotransmitter vasoactive intestinal polypeptide (VIP) as the key synchronizing agent. The model postulates that synchrony arises among circadian neurons because they release VIP rhythmically on a daily basis and in response to ambient light. Two basic cell types, intrinsically rhythmic pacemakers and damped oscillators, are assumed to arise from a distribution of Period gene transcription rates. Postsynaptic neurons show time-of-day dependent responses to VIP binding through a signaling ca...
In mammals, the circadian pacemaker, which controls daily rhythms, is located in the suprachiasmatic...
In mammals, the suprachiasmatic nuclei: SCN) in the ventral hypothalamus function as a circadian pac...
Individual neurons in the suprachiasmatic nuclei (SCN) contain an intracellular molecular clock and ...
AbstractThe mechanisms and consequences of synchrony among heterogeneous oscillators are poorly unde...
The mechanisms and consequences of synchrony among heterogeneous oscillators are poorly understood i...
AbstractIn mammals, the circadian pacemaker, which controls daily rhythms, is located in the suprach...
AbstractWe developed a multicellular model characterized by a high degree of heterogeneity to invest...
In mammals, the suprachiasmatic nuclei (SCN) of the hypothalamus act as a dominant circadian pacemak...
The suprachiasmatic nuclei (SCN) host a robust, self-sustained circadian pacemaker that coordinates ...
International audienceIn mammals, the circadian pacemaker, which controls daily rhythms, is located ...
Robust synchronization is a critical feature of several systems including the mammalian circadian cl...
AbstractWe developed a multicellular model characterized by a high degree of heterogeneity to invest...
AbstractIn mammals, the circadian pacemaker, which controls daily rhythms, is located in the suprach...
<div><p>Robust synchronization is a critical feature of several systems including the mammalian circ...
International audienceThe suprachiasmatic nuclei (SCN) host a robust, self-sustained circadian pacem...
In mammals, the circadian pacemaker, which controls daily rhythms, is located in the suprachiasmatic...
In mammals, the suprachiasmatic nuclei: SCN) in the ventral hypothalamus function as a circadian pac...
Individual neurons in the suprachiasmatic nuclei (SCN) contain an intracellular molecular clock and ...
AbstractThe mechanisms and consequences of synchrony among heterogeneous oscillators are poorly unde...
The mechanisms and consequences of synchrony among heterogeneous oscillators are poorly understood i...
AbstractIn mammals, the circadian pacemaker, which controls daily rhythms, is located in the suprach...
AbstractWe developed a multicellular model characterized by a high degree of heterogeneity to invest...
In mammals, the suprachiasmatic nuclei (SCN) of the hypothalamus act as a dominant circadian pacemak...
The suprachiasmatic nuclei (SCN) host a robust, self-sustained circadian pacemaker that coordinates ...
International audienceIn mammals, the circadian pacemaker, which controls daily rhythms, is located ...
Robust synchronization is a critical feature of several systems including the mammalian circadian cl...
AbstractWe developed a multicellular model characterized by a high degree of heterogeneity to invest...
AbstractIn mammals, the circadian pacemaker, which controls daily rhythms, is located in the suprach...
<div><p>Robust synchronization is a critical feature of several systems including the mammalian circ...
International audienceThe suprachiasmatic nuclei (SCN) host a robust, self-sustained circadian pacem...
In mammals, the circadian pacemaker, which controls daily rhythms, is located in the suprachiasmatic...
In mammals, the suprachiasmatic nuclei: SCN) in the ventral hypothalamus function as a circadian pac...
Individual neurons in the suprachiasmatic nuclei (SCN) contain an intracellular molecular clock and ...