Prolonged exposure to high fluoride levels during adolescence to adulthood elicits molecular, morphological, and functional impairments in the hippocampus

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Prolonged exposure to high fluoride levels during adolescence to adulthood  elicits molecular, morphological, and functional impairments in the  hippocampus
Cancer (Molecular) 12 - Oregon Health & Science University
Prolonged exposure to high fluoride levels during adolescence to adulthood  elicits molecular, morphological, and functional impairments in the  hippocampus
Repeated exposure to sevoflurane in neonatal rats impairs cognition in adulthood via the PKA‑CREB‑BDNF signaling pathway
Prolonged exposure to high fluoride levels during adolescence to adulthood  elicits molecular, morphological, and functional impairments in the  hippocampus
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Prolonged exposure to high fluoride levels during adolescence to adulthood  elicits molecular, morphological, and functional impairments in the  hippocampus
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Prolonged exposure to high fluoride levels during adolescence to adulthood  elicits molecular, morphological, and functional impairments in the  hippocampus
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Prolonged exposure to high fluoride levels during adolescence to adulthood  elicits molecular, morphological, and functional impairments in the  hippocampus
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Prolonged exposure to high fluoride levels during adolescence to adulthood  elicits molecular, morphological, and functional impairments in the  hippocampus
Frontiers Unraveling molecular characteristic of fluoride neurotoxicity on U87 glial-like cells: insights from transcriptomic and proteomic approach
Prolonged exposure to high fluoride levels during adolescence to adulthood  elicits molecular, morphological, and functional impairments in the  hippocampus
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Prolonged exposure to high fluoride levels during adolescence to adulthood  elicits molecular, morphological, and functional impairments in the  hippocampus
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Prolonged exposure to high fluoride levels during adolescence to adulthood  elicits molecular, morphological, and functional impairments in the  hippocampus
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Prolonged exposure to high fluoride levels during adolescence to adulthood  elicits molecular, morphological, and functional impairments in the  hippocampus
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Prolonged exposure to high fluoride levels during adolescence to adulthood  elicits molecular, morphological, and functional impairments in the  hippocampus
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Prolonged exposure to high fluoride levels during adolescence to adulthood  elicits molecular, morphological, and functional impairments in the  hippocampus
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Prolonged exposure to high fluoride levels during adolescence to adulthood  elicits molecular, morphological, and functional impairments in the  hippocampus
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Prolonged exposure to high fluoride levels during adolescence to adulthood  elicits molecular, morphological, and functional impairments in the  hippocampus
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