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6. Activation of feedforward wiring in adult hippocampal neurons by the basic-helix-loop-helix transcription factor Ascl4

7. Using mice from different breeding sites fails to improve replicability of results from single-laboratory studies

8. NECAB1-3, parvalbumin, calbindin, and calretinin in the hippocampus of the European mole.

9. Multimodal Anatomy of the Human Forniceal Commissure

10. Microglial-glucocorticoid receptor depletion alters the response of hippocampal microglia and neurons in a chronic unpredictable mild stress paradigm in female mice

15. Environmental enrichment improves hippocampus-dependent spatial learning in female C57BL/6 mice in novel IntelliCage sweet reward-based behavioral tests

16. Refinement of IntelliCage protocols for complex cognitive tasks through replacement of drinking restrictions by incentive-disincentive paradigms

17. Refinement of IntelliCage protocols for complex cognitive tasks through replacement of drinking restrictions by incentive-disincentive paradigms.

18. Bdnf-Nrf-2 crosstalk and emotional behavior are disrupted in a sex-dependent fashion in adolescent mice exposed to maternal stress or maternal obesity

21. The rearing environment persistently modulates mouse phenotypes from the molecular to the behavioural level

22. Cell numbers in the reflected blade of CA3 and their relation to other hippocampal principal cell populations across seven species

23. Lack of APLP1 leads to subtle alterations in neuronal morphology but does not affect learning and memory

24. The rearing environment persistently modulates mouse phenotypes from the molecular to the behavioural level

25. Multimodal anatomy of the human forniceal commissure

27. Rearing environment persistently modulates the phenotype of mice

28. Multimodal Anatomy of the Human Forniceal Commissure

29. Recurrent rewiring of the adult hippocampal mossy fiber system by a single transcriptional regulator, Id2

30. Loss of all three APP family members during development impairs synaptic function and plasticity, disrupts learning, and causes an autism-like phenotype

31. ATG5 in microglia does not contribute vitally to autoimmune neuroinflammation in mice

32. Loss of all three APP family members during development impairs synaptic function and plasticity, disrupts learning, and causes an autism‐like phenotype

37. Phylogenetic variation in cortical layer II immature neuron reservoir of mammals

48. Effects of Strain and Species on the Septo-Temporal Distribution of Adult Neurogenesis in Rodents

49. Recurrent rewiring of the adult hippocampal mossy fiber system by a single transcriptional regulator, Id2.

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