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1 d decreased growth for the first part of the light period.
2 ts together with pH inside corals during the light period.
3 ter-soluble glucans increased rapidly in the light period.
4  survival and phototrophic growth during the light period.
5 amino acids that accumulated in the previous light period.
6 educing integrated photosynthesis during the light period.
7 at is also sensitive to the extension of the light period.
8  dark period and total sleep and NREM during light period.
9 hout the 12-h dark period and following 12-h light period.
10 ore dark onset but not when given before the light period.
11 d then accumulates during the following 12-h light period.
12 ached its lowest levels in the middle of the light period.
13  a period of prolonged darkness prior to the light period.
14 th the daily peak occurring during the early light period.
15 levels, leaves were harvested throughout the light period.
16  measurements were made in the middle of the light period.
17 tly by initiation and degradation during the light period.
18 est during the dark period and lowest in the light period.
19 nhardtii, peaking once each day in the early light period.
20 dark, followed by high expression into early light period.
21 ns in both SWS and REMS in both the dark and light periods.
22 ith the highest levels detected in the early light period (2-6 h) and the late dark period (4-6 h).
23 allowed to sleep during the first 4 h of the light period (4S(+)) but not during the following 20 h (
24  during the dark period in comparison to the light period and a 'W-shaped' pattern of activity during
25 001) showing a trough towards the end of the light period and a peak in the mid-dark period.
26 ions were strictly controlled with a 16-hour light period and an 8-hour dark period.
27 immunoreactive (c-Fos-ir) neurons during the light period and early dark period in photostimulated vs
28  period, decreased at later times during the light period and eventually reached a level where they w
29                     Recordings from the 10-h light period and the 12-h dark period were examined sepa
30             The mean results for the 12-hour light period and the 12-hour dark period were compared.
31  tufA transcription also peaked early in the light period and, moreover, that this transcriptional os
32 protein D1, accumulated primarily during the light period, and net transcription reached a peak betwe
33  neutral lipids) was observed throughout the light period, and water-soluble glucans increased rapidl
34 nation and its steady state level during the light period are downregulated by phototropin, whereas t
35 its processing via Rubisco in the subsequent light period - are now reasonably well understood in ter
36 s spent less time in SWS and REMS during the light period but more time in SWS and REMS in the dark p
37  phase (the human dark period, but the mouse light period), but also synchronizes the ubiquitous peri
38 ription of nifHDK was initiated prior to the light period, followed by psbA and finally psaA.
39 to a level observed during NREM sleep in the light period in controls suggesting that the sleep-wake
40 r significantly decreased REM during the 8-h light period in mice receiving SAL and in mice receiving
41                        At the ending of each light period, IOP was measured under illumination.
42 ikinase (PPDK) catalyze two key steps during light-period malate decarboxylation that underpin second
43  dark period (mean, 17.10 mm Hg) than in the light period (mean 11.84 mm Hg).
44  during the dark period and lower during the light period (mean change, 3.6 mm Hg; P < 0.005).
45 romoted NREMS and suppressed REMS during the light period of the day.
46 starch excess phenotype in leaves during the light period of the growth cycle due to an apparent incr
47  diurnal alternance of the active phase (the light period of the human light-dark cycle, but the mous
48 onsequence of metabolism at the start of the light period, of the high levels of malto-oligosaccharid
49  injecting carbachol at the beginning of the light period or beginning of the dark period, we sought
50 y tested in plants perturbed by a night-time light period or by mutations in starch degradation pathw
51 ygen 5-6% at 60 cycles h(-1) for 12 h during light period) or intermittent air (IA; control) and (2)
52 se shifts of the sleep-wake cycle in a short light period (photoperiod) paradigm.
53 gametes into seawater following an inductive light period (potentiation), and gamete expulsion from p
54 hat CO activation of FT occurs only when the light period reaches a certain length and preventing pre
55              FS also significantly decreased light period REM whereas mFS did not.
56 23 (16.6%) of the 139 neurones tested in the light period responded.
57 ral nucleus of the amygdala (CNA) during the light period significantly reduced REM, shortened sleep
58 and approximately 4 times more active during light periods than old rats.
59 is to maintain rods at saturation during the light period, then in retinal regions where light intens
60 p, NREM and REM; however, mNE also increased light period total sleep and NREM, but not REM.
61               When the duration of the daily light period was manipulated experimentally, melatonin-o
62  and non-responsive neurones in the dark and light periods was highly significant (P < 0.01, Fisher's
63 uctuating light conditions, in which the low light periods were repeatedly interrupted with high ligh
64                      In contrast, during the light period, when these mice are normally inactive and
65 wake time (decreased total sleep) during the light period, which corresponds to human night time.
66  a new mechanism for sensing the duration of light period, which is important for seasonal changes in

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