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1  during the less active portion of the daily activity cycle.
2 asses through the GTP bound state during its activity cycle.
3 period of the Drosophila circadian locomotor activity cycle.
4 ponse of the atmosphere to the 11-year solar activity cycle.
5 roviding a neural correlate of the disturbed activity cycles.
6 ing that contractile pulses result from RhoA activity cycling.
7                              To complete the activity cycle, a chaperone molecule must ultimately ret
8 ts that SUMOylation of Drp1 is linked to its activity cycle and is influenced by Drp1 localization.
9 er clock control or are mediated by the rest-activity cycle and the timing of food intake is unclear.
10 e, in which natural connections between rest/activity cycles and environmental light/dark cycles have
11 oups of subjects, mild, moderate with normal activity cycles and moderate with abnormal activity cycl
12 ovide a link between disruption of circadian activity cycles and synaptic dysfunction in a model of n
13 levels fluctuate in synchrony with ultradian activity cycles and that dopaminergic tone strongly pred
14               Our data demonstrate that RhoA activity cycling and modulating the ratio of RhoGEF2 to
15 onal activity incumbent with the daily sleep-activity cycle, and its functional linkages to the SCN a
16         Drosophila exhibits a circadian rest-activity cycle, but it is not known whether fly rest con
17 ignaling the beginning or the end of a daily activity cycle, but they can also be used to time the pr
18 -ribose adducts and in facilitating multiple activity cycles by individual PARP molecules.
19           After increased levels of synaptic activity, cycling ceases, and all GluR2-containing recep
20 cts of time-of-day and the organism's innate activity cycles (e.g., nocturnal, diurnal, or crepuscula
21 l activity cycles and moderate with abnormal activity cycles, exhibited robust daily profiles of sali
22 ve task, hyperactivity, and a disturbed rest-activity cycle, features all common to AS.
23  and GAD67) do not differ over the circadian activity cycle in the suprachiasmatic nucleus (SCN) of r
24 ontain both CSBPA and CSBPB, and the binding activity cycles in near synchrony with target mRNA level
25                                          The activity cycle is coupled to GTP hydrolysis and is tight
26           New work shows that circadian MAPK activity cycling is important in the formation of new hi
27  3 beats min-1), and decreased phrenic nerve activity cycle length and amplitude (P < 0.05).
28  hippocampus, different phases of each theta activity cycle may be devoted to encoding and retrieval
29 monitoring system (BMS) to monitor the daily activity cycle of tephritid fruit flies Anastrepha luden
30 clease protection assays, were linked to the activity cycle of the glands.
31 molecular pathways that underlie the intense activity cycles of hibernator BAT.
32 ars with solar-like dynamos (such as flares, activity cycles, spatial and thermal structuring of the
33 tassium ions across cell membranes during an activity cycle that uses the energy released by ATP hydr
34  rab4 during the soluble phase of its normal activity cycle, thereby preventing membrane attachment.
35   To determine the relationship of disturbed activity cycles to other circadian clock-controlled rhyt
36 genesis, although its associated Cdk2 kinase activity cycled twice for each oscillation of cyclin B1/
37 ational changes during various stages of the activity cycle using thiol-specific reagents, fluorescen
38                                       dCREB2 activity cycles with a 24 hr rhythm in flies, both in a

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