Barely Significant
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“a nonsignificant trend”

5,407 sentences · 5,407 papers · 7,516 search hits before verification · confirmed specimen

Sighted at

p<0.1

Listed by Hankins (2013) · Otte et al. (2022)

In the literature

A nonsignificant trend toward a decrease for both DP8α Treg frequency ( Figure 8A ) and their CD73 expression ( Figure 8B ) was observed before mobilization in available donors whose grafts triggered aGvHD in patients, suggesting that donors with a reduced frequency of CD73 + DP8α Tregs could already harbor features making them prone to aGvHD development in recipients.
A nonsignificant trend towards a relationship between serum ln-transformed cotinine levels in the 1.24–2.91 ng/mL range and ln-transformed RBC folate levels was detected [-0.238 (-0.555, 0.079); p = 0.134], suggesting that other factors may play a predominant role in modulating this relationship within this range.
Channel-specific MSE values were negatively associated with intelligence (only significant when uncorrected for multiple comparisons) for channels Fp1, Fp2, Fz, FC1, FC2, T7, Cz, CP1, and CP2, especially (but not exclusively) at finer time scales (scales 4–9), while we observed a nonsignificant trend toward positive associations for parietal (P3, Pz) and frontal channels (e.g., F3, FC5) at coarser time scales (scales 10–20; Fig. 6 D ).
Consistent with previous findings supporting the female protective model, 13 we observed a nonsignificant trend toward a higher frequency of dnLGD variants in constrained genes in female cases compared with males (0.135/female vs 0.096/male), as well as higher frequency of de novo D-mis variants in female cases (CADD ≥25: 0.416/female vs 0.354/male, MPC ≥2: 0.09/female vs 0.066/male).
After 24 h, only a nonsignificant trend toward reduced adhesion was observed (Figure 9 , right panel). 3.2.5 SEM Analysis of Bacterial Adhesion at 1 and 24 h Incubation Times To complement the quantitative analysis of bacterial adherence, SEM was performed on representative samples to visualize S. aureus interactions with Ti–6Al–4V surfaces of varying nanoroughness.