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points decrease » point decrease (Expand Search), point increase (Expand Search)
ng decrease » nn decrease (Expand Search), _ decrease (Expand Search), we decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
3 points » _ points (Expand Search), _ point (Expand Search), 5 point (Expand Search)
points decrease » point decrease (Expand Search), point increase (Expand Search)
ng decrease » nn decrease (Expand Search), _ decrease (Expand Search), we decrease (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
3 points » _ points (Expand Search), _ point (Expand Search), 5 point (Expand Search)
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881
All data points from Fig 1.
Published 2025“…Following a remyelination period of 5 weeks, PV interneuron properties were only partially recovered, suggesting that transient juvenile demyelination leads to long-lasting impairments of PV interneuron function. …”
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882
All data points from Fig 4.
Published 2025“…Following a remyelination period of 5 weeks, PV interneuron properties were only partially recovered, suggesting that transient juvenile demyelination leads to long-lasting impairments of PV interneuron function. …”
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883
All data points from Fig 9.
Published 2025“…Following a remyelination period of 5 weeks, PV interneuron properties were only partially recovered, suggesting that transient juvenile demyelination leads to long-lasting impairments of PV interneuron function. …”
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884
All data points from Fig 7.
Published 2025“…Following a remyelination period of 5 weeks, PV interneuron properties were only partially recovered, suggesting that transient juvenile demyelination leads to long-lasting impairments of PV interneuron function. …”
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885
All data points from Fig 6.
Published 2025“…Following a remyelination period of 5 weeks, PV interneuron properties were only partially recovered, suggesting that transient juvenile demyelination leads to long-lasting impairments of PV interneuron function. …”
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886
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887
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888
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889
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890
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891
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892
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893
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894
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895
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896
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897
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898
The novel <i>carboxylesterase 1</i> variant c.662A>G may decrease the bioactivation of oseltamivir in humans
Published 2017“…A novel <i>CES1</i> c.662A>G single nucleotide polymorphism (SNP) was predicted to decrease CES1 enzymatic activity in an <i>in silico</i> analysis. …”
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899
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900