بدائل البحث:
significant decrease » significant increase (توسيع البحث), significantly increased (توسيع البحث)
significant change » significant changes (توسيع البحث), significant challenge (توسيع البحث), significant challenges (توسيع البحث)
change decrease » change increases (توسيع البحث), change degree (توسيع البحث)
significant decrease » significant increase (توسيع البحث), significantly increased (توسيع البحث)
significant change » significant changes (توسيع البحث), significant challenge (توسيع البحث), significant challenges (توسيع البحث)
change decrease » change increases (توسيع البحث), change degree (توسيع البحث)
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848
Changes in Burnout, Resilience, and PTS Across Time Using Repeated Measures ANOVA.
منشور في 2025الموضوعات: -
849
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850
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851
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857
S1 Data -
منشور في 2024"…The total chlorophyll content of blueberry leaves at 25% light intensity increased by 76.4% compared with CK during the blue fruiting stage; the maximum net photosynthetic rate (Pmax), light compensation point (LCP), light saturation point (LSP), rate of dark respirations (Rd), inter-cellular CO<sub>2</sub> concentration (Ci), stomatal conductance (Gs), transpiration rate (Tr), net photosynthesis rate (Pn), and chlorophyll a/b showed a decreasing trend with decreasing light intensity. The Pn of blueberry leaves was highest under full light conditions at all three stages, and the Pn at 25% light intensity decreased by 68.5% compared with CK during the white fruiting stage Reflecting the fact that blueberries can adapt to low-light environments through increases in chlorophyll and carotenoids, but reduced light intensity significantly inhibited their photosynthesis. …"
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858
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859
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860
Comparison between juvenile and adult demyelination.
منشور في 2025"…Juvenile demyelination leads to impairment in PV interneuron maturation whereas adult demyelination induces a decrease in the excitability of PV interneurons. Summary data showing the averaged (± s.e.m) of the following intrinsic properties: (A) Resting membrane potential (RMP) (<i>ANOVA: n = 36,30,19,24 cells from 9/8/8/6 mice per group, ****p < 0.0001, post-hoc LSD test: *p < 0.05, **p < 0.01, ****p < 0.0001</i>), (B) Input resistance (IR) (<i>ANOVA: n = 36,30,19,24 cells from 9/8/8/6 mice per group, **p = 0.0024, post-hoc LSD test: *p < 0.05, **p < 0.01, ***p < 0.001</i>), (C) Sag (<i>ANOVA: n = 36,30,19,24 cells from 9/8/8/6 mice per group, **p = 0.0083, post-hoc LSD test: *p < 0.05, **p < 0.01</i>), (D) Rheobase (<i>ANOVA: n = 36,30,19,24 cells from 9/8/8/6 mice per group, p = 0.1230, post-hoc LSD test: *p < 0.05</i>) and (E) Action potential (AP) threshold (<i>ANOVA: n = 36,30,19,24 cells from 9/8/8/6 mice per group, *p = 0.0452, post-hoc LSD test: *p < 0.05</i>), (F) AP half-width (<i>ANOVA: n = 36,30,19,24 cells from 9/8/8/6 mice per group, **p = 0.0058, post-hoc LSD test: **p < 0.01</i>), (G) Average action potential (AP) frequency in response to 0–650 pA current steps illustrating no significant change in S1 PV interneuron firing frequency following juvenile demyelination (<i>group x current two-way repeated measures: n = 36,30,19,24 cells from 9/8/8/6 mice per group: F(39,1,291) = 2.487, ****p < 0.0001</i>) and (H) Maximum firing frequency per group (<i>ANOVA: n = 36,30,19,24 cells from 9/8/8/6 mice per group, ****p < 0.0001, post-hoc LSD test: ***p < 0.001, ****p < 0.0001</i>). …"