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45 results on '"Deckmann, Iohanna"'

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1. Resveratrol prevents long-term structural hippocampal alterations and modulates interneuron organization in an animal model of ASD

2. Resveratrol prevents long-term structural hippocampal alterations and modulates interneuron organization in an animal model of ASD

3. Transcription Factors in Neurodevelopmental and Associated Psychiatric Disorders: A Potential Convergence for Genetic and Environmental Risk Factors

4. Resveratrol prevents brain edema, blood–brain barrier permeability, and altered aquaporin profile in autism animal model

5. Transcription Factors in Neurodevelopmental and Associated Psychiatric Disorders: A Potential Convergence for Genetic and Environmental Risk Factors

6. Resveratrol prevents brain edema, blood–brain barrier permeability, and altered aquaporin profile in autism animal model

7. Resveratrol prevents brain edema, blood-brain barrier permeability, and altered aquaporin profile in autism animal model

8. Transcription factors in neurodevelopmental and associated psychiatric disorders:A potential convergence for genetic and environmental risk factors

9. Transcription factors in neurodevelopmental and associated psychiatric disorders:A potential convergence for genetic and environmental risk factors

10. Resveratrol prevents brain edema, blood–brain barrier permeability, and altered aquaporin profile in autism animal model

11. Resveratrol prevents brain edema, blood–brain barrier permeability, and altered aquaporin profile in autism animal model

12. Transcription Factors in Neurodevelopmental and Associated Psychiatric Disorders: A Potential Convergence for Genetic and Environmental Risk Factors

13. Transcription Factors in Neurodevelopmental and Associated Psychiatric Disorders: A Potential Convergence for Genetic and Environmental Risk Factors

14. Transcription Factors in Neurodevelopmental and Associated Psychiatric Disorders: A Potential Convergence for Genetic and Environmental Risk Factors

15. Resveratrol prevents brain edema, blood–brain barrier permeability, and altered aquaporin profile in autism animal model

16. Effects of single-dose antipurinergic therapy on behavioral and molecular alterations in the valproic acid-induced animal model of autism

17. Effects of single-dose antipurinergic therapy on behavioral and molecular alterations in the valproic acid-induced animal model of autism

18. Effects of single-dose antipurinergic therapy on behavioral and molecular alterations in the valproic acid-induced animal model of autism

19. Effects of single-dose antipurinergic therapy on behavioral and molecular alterations in the valproic acid-induced animal model of autism

20. Effects of single-dose antipurinergic therapy on behavioral and molecular alterations in the valproic acid-induced animal model of autism

21. Effects of single-dose antipurinergic therapy on behavioral and molecular alterations in the valproic acid-induced animal model of autism

22. Effects of single-dose antipurinergic therapy on behavioral and molecular alterations in the valproic acid-induced animal model of autism

23. Effects of single-dose antipurinergic therapy on behavioral and molecular alterations in the valproic acid-induced animal model of autism

24. Data on social transmission of food preference in a model of autism induced by valproic acid and translational analysis of circulating microRNA

25. Behavioral alterations in autism model induced by valproic acid and translational analysis of circulating microRNA

26. Resveratrol prevents cellular and behavioral sensory alterations in the animal model of autism induced by valproic acid

27. Data on social transmission of food preference in a model of autism induced by valproic acid and translational analysis of circulating microRNA

28. Behavioral alterations in autism model induced by valproic acid and translational analysis of circulating microRNA

29. Data on social transmission of food preference in a model of autism induced by valproic acid and translational analysis of circulating microRNA

30. Resveratrol prevents cellular and behavioral sensory alterations in the animal model of autism induced by valproic acid

31. Behavioral alterations in autism model induced by valproic acid and translational analysis of circulating microRNA

32. Behavioral alterations in autism model induced by valproic acid and translational analysis of circulating microRNA

33. Data on social transmission of food preference in a model of autism induced by valproic acid and translational analysis of circulating microRNA

34. Resveratrol Prevents Cellular and Behavioral Sensory Alterations in the Animal Model of Autism Induced by Valproic Acid

35. Behavioral alterations in autism model induced by valproic acid and translational analysis of circulating microRNA

36. Resveratrol Prevents Cellular and Behavioral Sensory Alterations in the Animal Model of Autism Induced by Valproic Acid

37. Neuroimmune Alterations in Autism:A Translational Analysis Focusing on the Animal Model of Autism Induced by Prenatal Exposure to Valproic Acid

38. Data on social transmission of food preference in a model of autism induced by valproic acid and translational analysis of circulating microRNA

39. Resveratrol prevents cellular and behavioral sensory alterations in the animal model of autism induced by valproic acid

40. Behavioral alterations in autism model induced by valproic acid and translational analysis of circulating microRNA

41. Data on social transmission of food preference in a model of autism induced by valproic acid and translational analysis of circulating microRNA

42. Behavioral alterations in autism model induced by valproic acid and translational analysis of circulating microRNA

43. Data on social transmission of food preference in a model of autism induced by valproic acid and translational analysis of circulating microRNA

44. Resveratrol prevents cellular and behavioral sensory alterations in the animal model of autism induced by valproic acid

45. Behavioral alterations in autism model induced by valproic acid and translational analysis of circulating microRNA

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