Global ETD Search
Search theses and dissertations gathered from participating repositories worldwide. Every result links back to the library that holds it. No account is needed.
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Showing 1 to 8 of 8 for “"peripheral clocks"”.
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Chronobiological plasticity in Honeybee and its association with differences in the organization of the molecular pathway between central and peripheral clocks: the brain and flight muscle tissues.
… to the kind of relationships between different clocks, involving eventually total and partial autonomy, especially in such an excellent model in chronobiology: the Honeybee.
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Circadian Timekeeping of Body Temperature by the Mammalian Suprachiasmatic Nucleus
… (CRT) is a universal cue for entraining the peripheral clocks in mammals. The hypothalamic suprachiasmatic nucleus (SCN) is required for generating the ~24-hour rhythms of body temperature (Tb); however, the neural mechanism underlying this regulation remains poorly understood. Here, we …
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THE ROLE of THE CIRCADIAN CLOCK IN DISEASE and TISSUE FUNCTION
… suprachiasmatic nuclei (SCN) synchronizes the peripheral clocks in different tissues. This dissertation aims to uncover specific circadian regulatory mechanisms in the brain and skeletal muscle.</p> <p>Alzheimer’s Disease (AD) is the most common type of dementia. It has previously been shown …
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FROM CLOCKS TO EXERCISE, FROM METABOLISM TO PERFORMANCE: A CHRONOPHYSIOLOGICAL APPROACH
… between the central biological clock and peripheral clocks is described, with a focus on clock genes such as Cry1 and Cry2, which are crucial in regulating metabolic processes and circadian rhythms. Then, experimental studies are presented, which demonstrate the effects of sleep …
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Circadian desynchrony in the mouse: how does chronic exposure to rotating shift work-like patterns of light/dark affect circadian rhythms and neurobehavioural outcomes
… not weakened possibly pointing to desynchrony in peripheral clocks or a role of other mechanisms, such as stress or sleep disturbance, in mediating the effects described.
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Is there a role for NF-κB in the suprachiasmatic circadian clock?
… oscillators in numerous brain areas and peripheral organs and tissues. NF-κB is composed of dimers of members of the Rel family, including p65 (RelA), p50, p52, c-Rel and Rel B. NF-κB transcription factors are required for regulating cell survival and differentiation and also are …
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Crosstalk Signaling Between Circadian Clock Components and Iron Metabolism
… the growing body of research into how circadian clocks, especially the peripheral clock of the liver, receive input from a range of metabolites in conjunction with signals from the master oscillator of the suprachiasmatic nucleus.
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REGULATION OF CIRCADIAN CLOCKS AND METABOLISM BY SYNTHETIC AHR AGONIST BETA-NAPHTHOFLAVONE IN MICE
… the pace-maker and maintaining synchrony among clocks found in every organ system throughout the body. The core molecular clock consists of two interconnected transcriptional-translational feedback loops comprising core clock components: Brain and Muscle Arnt-Like protein1 (BMAL1), Circadian …