Mostrando 6,441 - 6,460 Resultados de 6,468 Para Buscar 'talonas~', tiempo de consulta: 1.91s Limitar resultados
  1. 6441
    “…Urinary metabolomic analysis clearly differentiated the patient group from the control group by means of higher allo-inositol, talose, glucose, 2-hydroxybutiric acid, cystine, pyruvic acid, valine, and phenylalanine levels, and lower metabolite (N-acetyl-L-glutamic acid, 3-aminopropionitrile, ribitol, hydroquinone, glucuronic acid, 3-phosphoglycerate, xanthine, creatinine, and 5-aminovaleric acid) levels in the patient group. …”
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  2. 6442
  3. 6443
  4. 6444
  5. 6445
  6. 6446
  7. 6447
    “…GC-MS metabolite profiling of CE showed that their carbohydrates are mainly composed of D-mannose (29.21%), D-fructose, (18.51%), L-sorbose (12.91%), D-galactose (5.47%) and D-Talose (5.21%). Ultra-fine nanoparticles of 11.60 ±4.65 nm comprising Cu(2)O and Cu(OH)(2) species were obtained with a carbohydrate and phenolic content of 35.6±3.2% and 3.13±0.05 mgGA/g, respectively. …”
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  8. 6448
  9. 6449
  10. 6450
  11. 6451
  12. 6452
  13. 6453
  14. 6454
  15. 6455
  16. 6456
  17. 6457
    “…In cows with inactive ovaries compared with cows in estrus, 20 serum metabolites were significantly higher (beta-cryptoxanthin (p = 0.0012), 9-cis-retinal (p = 0.0030), oxamic acid (p = 0.0321), etc.) while 10 metabolites were significantly lower (monostearin (p = 0.0001), 3-hydroxypropionic acid (p = 0.0005), D-talose (p = 0.0018), etc.). Pathway analysis indicated that the serum differential metabolites of multiparous cows in estrus obtained by the two metabolomics techniques were mainly involved in β-alanine metabolism and steroid biosynthesis metabolism, while other involved metabolic pathways were related to metabolism of glyoxylate; dicarboxylate metabolism; fructose, mannose, glutathione, glycerolipid, glycine, serine, threonine, propanoate, retinol, and pyrimidine metabolism. …”
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  18. 6458
  19. 6459
  20. 6460
    “…The prevalence of documented anomalies is as follows: tongue-tie 197 (3.90%), dental fluorosis 171 (3.40%), high frenal attachments 156 (3.10%), cusp of Carabelli 14 (0.30%), supernumerary teeth 11 (0.20%), microdontia 4 (0.10%), congenitally missing teeth 4 (0.10%), lip pits 3 (0.08%), fusion 2 (0.04%), retained deciduous teeth 2 (0.04%) and one case of angular cheilitis, cleft lip and cleft palate, talon cusp, amelogenesis imperfecta (0.02%). The prevalence of dental anomalies was 18.10% in 3–5 years, 52.30% among 6–12 years and 29.6% in 13–15 years. …”
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