Mostrando 141 - 160 Resultados de 170 Para Buscar '"WALL·E"', tiempo de consulta: 1.83s Limitar resultados
  1. 141
    por Bielefeldt, Klaus
    Publicado 2010
    “…Treatment of functional gastrointestinal disorders remains difficult with many very different approaches showing similar response rates, regardless of whether they target luminal contents (e.g., presumed bacterial overgrowth), signaling within the gut wall (e.g., serotonin agonists or antagonists) or processing in the brain (e.g., cognitive behavioral therapy). …”
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  2. 142
    “…Plants have evolved a variety of dispersal units whereby the embryo is enclosed by various dead protective layers derived from maternal organs of the reproductive system including seed coats (integuments), pericarps (ovary wall, e.g., indehiscent dry fruits) as well as floral bracts (e.g., glumes) in grasses. …”
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  3. 143
  4. 144
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  7. 147
    por Szczepaniak, Zenon, Susek, Waldemar
    Publicado 2019
    “…The precise detector of movement can be successfully used for the remote sensing of human vital signs (especially through-the-wall), e.g., breathing and heart beating, with the simultaneous determination of position.…”
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  8. 148
    por Banks, Jaime
    Publicado 2020
    “…Robot villains and heroes—from Ultron to Wall-E—have been shown to serve a specific cultivation function, shaping people's perceptions of those embodied social technologies, especially when individuals do not have direct experience with them. …”
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  9. 149
    por Li, Yizeng, Zhou, Xiaohan, Sun, Sean X.
    Publicado 2021
    “…Cells lacking a stiff cell wall, e.g., mammalian cells, must actively regulate their volume to maintain proper cell function. …”
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  10. 150
  11. 151
    “…BACKGROUND: Antibiotics of the β-lactam group are able to alter the shape of the bacterial cell wall, e.g. filamentation or a spheroplast formation. …”
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  12. 152
    “…The protective role of Si was initially attributed to a physical barrier fortifying the cell wall (e.g., against fungal hyphae penetration), however, several studies have shown that the action of this element on plants is far more complex, as it involves a cross-talk with the cell interior and an effect on plant metabolism. …”
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  13. 153
  14. 154
  15. 155
    “…RESULTS: This study show that both CO, systolic longitudinal ventricular velocity of the septum (S's) and lateral wall (S'l), the early diastolic longitudinal ventricular velocity of the lateral wall (E'l), the late diastolic longitudinal ventricular velocity of the septum (A's) and lateral wall (A'l) increase significantly, and were concomitant with increased satiety, antral area, glucose and insulin levels. …”
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  16. 156
    “…To assess the quantitative effect of AMF hyphae on soil microbial community, we separated the hyphal compartment soil into four horizontal layers from the central mesh to outer wall (e.g., L1–L4). Soil total PCBs dissipation rates ranged from 35.67% of L4 layer to 57.39% of L1 layer in AMF inoculated treatment, which were significant higher than the 17.31% of the control (P < 0.05). …”
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  17. 157
    “…The use a unique refractive index-matching method provides unprecedented optical access and allowed us to perform non-intrusive velocity field measurements close to the wall (e.g., Particle Image Velocimetry (PIV)). Measurements were performed in a flow regime comparable to a resting breathing state (Reynolds number Re(D) = 3350). …”
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  18. 158
    “…Both uni- and multivariate logistic regression analyses revealed that low left ventricular Tei index, low early diastolic mitral annular velocity of lateral wall wave, low early diastolic mitral annular velocity of septal wall wave, high septal early diastolic transmitral velocity to early diastolic mitral annular velocity of lateral wall (E/E') ratio, and high Gal-3 are significant predictors for LVDD in the whole study group. …”
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  19. 159
    “…In terms of diastolic function and left ventricular hypertrophy, the ventricular septal e′ (5.01 ± 2.69 vs. 6.48 ± 2.29, P = 0.025), lateral wall e′ (6.63 ± 3.50 vs. 8.62 ± 2.73, P = 0.013), mean E/e′ (20.06 ± 7.53 vs. 13.20 ± 6.05, P = 0.001), left atrial volume index (43.53 ± 10.94 vs. 35.78 ± 13.86, P = 0.008), tricuspid regurgitation (TR) peak flow rate (3.16 ± 0.44 vs. 2.75 ± 0.50, P < 0.001), left ventricular mass index (LVMI) in male (163.2 ± 47.6 vs. 131.3 ± 38.0, P = 0.015) and in female (147.4 ± 48.6 vs. 110.6 ± 24.3, P = 0.036) was significantly different between the third quartile and the first quartile. …”
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  20. 160
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