Search alternatives:
increase decrease » increased release (Expand Search), increased crash (Expand Search)
larger decrease » marked decrease (Expand Search)
alter decrease » water decreases (Expand Search), teer decrease (Expand Search), alter disease (Expand Search)
increase decrease » increased release (Expand Search), increased crash (Expand Search)
larger decrease » marked decrease (Expand Search)
alter decrease » water decreases (Expand Search), teer decrease (Expand Search), alter disease (Expand Search)
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Group-level narrow- and broad-band spectral changes after hemispherotomy reveal a marked EEG slowing of the isolated cortex, robust across patients.
Published 2025“…This decrease was larger in the disconnected than in the contralateral cortex. …”
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653
An <i>In Situ</i> TEM Study of the Diffusivity of Gold Atoms in Nanocomposite Thin Films by Zirconia Co-Deposition: Implication for Neuromorphic Devices
Published 2025“…Introducing zirconia into the gold films notably altered their thermal stability. Indeed, the presence of zirconia clusters limited the diffusivity of gold atoms, increasing the temperature threshold for depercolation and enhancing the film’s thermal stability. …”
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654
An <i>In Situ</i> TEM Study of the Diffusivity of Gold Atoms in Nanocomposite Thin Films by Zirconia Co-Deposition: Implication for Neuromorphic Devices
Published 2025“…Introducing zirconia into the gold films notably altered their thermal stability. Indeed, the presence of zirconia clusters limited the diffusivity of gold atoms, increasing the temperature threshold for depercolation and enhancing the film’s thermal stability. …”
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655
An <i>In Situ</i> TEM Study of the Diffusivity of Gold Atoms in Nanocomposite Thin Films by Zirconia Co-Deposition: Implication for Neuromorphic Devices
Published 2025“…Introducing zirconia into the gold films notably altered their thermal stability. Indeed, the presence of zirconia clusters limited the diffusivity of gold atoms, increasing the temperature threshold for depercolation and enhancing the film’s thermal stability. …”
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656
An <i>In Situ</i> TEM Study of the Diffusivity of Gold Atoms in Nanocomposite Thin Films by Zirconia Co-Deposition: Implication for Neuromorphic Devices
Published 2025“…Introducing zirconia into the gold films notably altered their thermal stability. Indeed, the presence of zirconia clusters limited the diffusivity of gold atoms, increasing the temperature threshold for depercolation and enhancing the film’s thermal stability. …”
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657
An <i>In Situ</i> TEM Study of the Diffusivity of Gold Atoms in Nanocomposite Thin Films by Zirconia Co-Deposition: Implication for Neuromorphic Devices
Published 2025“…Introducing zirconia into the gold films notably altered their thermal stability. Indeed, the presence of zirconia clusters limited the diffusivity of gold atoms, increasing the temperature threshold for depercolation and enhancing the film’s thermal stability. …”
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658
An <i>In Situ</i> TEM Study of the Diffusivity of Gold Atoms in Nanocomposite Thin Films by Zirconia Co-Deposition: Implication for Neuromorphic Devices
Published 2025“…Introducing zirconia into the gold films notably altered their thermal stability. Indeed, the presence of zirconia clusters limited the diffusivity of gold atoms, increasing the temperature threshold for depercolation and enhancing the film’s thermal stability. …”
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659
An <i>In Situ</i> TEM Study of the Diffusivity of Gold Atoms in Nanocomposite Thin Films by Zirconia Co-Deposition: Implication for Neuromorphic Devices
Published 2025“…Introducing zirconia into the gold films notably altered their thermal stability. Indeed, the presence of zirconia clusters limited the diffusivity of gold atoms, increasing the temperature threshold for depercolation and enhancing the film’s thermal stability. …”
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660