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SleepCited

Tryptophan Figures

10 figures from peer-reviewed research

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Figure 1
Figure 1

Two combined amino acids promote sleep activity in caffeine-induced sleepless model systems.

Figure 2
Figure 2

Two combined amino acids promote sleep activity in caffeine-induced sleepless model systems.

Figure 3
Figure 3

Two combined amino acids promote sleep activity in caffeine-induced sleepless model systems.

Figure 4
Figure 4

Two combined amino acids promote sleep activity in caffeine-induced sleepless model systems.

Group Dose (mg/kg) Caffeine (mg/kg) No. falling sleep/total Sleep onset (%) Sleep duration (min) Normal 0 0 6/13 46.15 29.72 ± 2.13a Control 0 10 6/15 40.00 16.40 ± 0.49c GABA 60 10 9/14 64.29 21.55 ± 0.52bc 5-HTP 6 10 8/14 57.14 25.88 ± 1.05ab Combined G
Figure 5

Group Dose (mg/kg) Caffeine (mg/kg) No. falling sleep/total Sleep onset (%) Sleep duration (min) Normal 0 0 6/13 46.15 29.72 ± 2.13a Control 0 10 6/15 40.00 16.40 ± 0.49c …

Two combined amino acids promote sleep activity in caffeine-induced sleepless model systems.

Figure 6
Figure 6

Study on gut microbiota and metabolomics in postmenopausal women.

Figure 7
Figure 7

Study on gut microbiota and metabolomics in postmenopausal women.

Figure 8
Figure 8

Study on gut microbiota and metabolomics in postmenopausal women.

Figure 9
Figure 9

Study on gut microbiota and metabolomics in postmenopausal women.

Fig. 5 The relationship between gut microbiota and gut metabolism, with red and yellow indicating positive correlation and green indicating negative correlation. The significance of the chart is represented as follows: P < 0.01 * *, P < 0.5*
Figure 10

Fig. 5 The relationship between gut microbiota and gut metabolism, with red and yellow indicating positive correlation and green indicating negative correlation. The significance of the chart is represented as …

Study on gut microbiota and metabolomics in postmenopausal women.