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Cerebral Cortex Communications
As of 1 January 2024, Cerebral Cortex Communications is no longer published and does not accept submissions.
Journal

Cerebral Cortex
Publishes papers on the development, organization, plasticity, and function of the cerebral cortex, including the hippocampus.
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Block diagram of the implemented system.
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Cerebral Cortex
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High-frequency oscillations in autism spectrum disorder: are they related to clinical severity?
Published: 16 April 2025
Fig. 1
Block diagram of the implemented system.
Journal Article
High-frequency oscillations in autism spectrum disorder: are they related to clinical severity?
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Burçin Şanlidağ and others
Cerebral Cortex, Volume 35, Issue 4, April 2025, bhaf068, https://doi.org/10.1093/cercor/bhaf068
Published: 16 April 2025
Journal Article
Changes in information segregation and integration of aMCI based on low- and high-order functional connectivity
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Rui Su and others
Cerebral Cortex, Volume 35, Issue 4, April 2025, bhaf001, https://doi.org/10.1093/cercor/bhaf001
Published: 15 April 2025
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Construction of dynamic network.
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Cerebral Cortex
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Changes in information segregation and integration of aMCI based on low- and high-order functional connectivity
Published: 15 April 2025
Fig. 2
Construction of dynamic network.
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Nodal eigenvalues of LOFC network.
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Cerebral Cortex
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Changes in information segregation and integration of aMCI based on low- and high-order functional connectivity
Published: 15 April 2025
Fig. 5
Nodal eigenvalues of LOFC network.
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Global eigenvalues of HOFC network.
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Cerebral Cortex
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Changes in information segregation and integration of aMCI based on low- and high-order functional connectivity
Published: 15 April 2025
Fig. 8
Global eigenvalues of HOFC network.
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NSE of dynamic low-order network.
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Cerebral Cortex
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Changes in information segregation and integration of aMCI based on low- and high-order functional connectivity
Published: 15 April 2025
Fig. 11
NSE of dynamic low-order network.
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Correlation of eigenvalues between genuine and original HOFC networks.
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Cerebral Cortex
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Changes in information segregation and integration of aMCI based on low- and high-order functional connectivity
Published: 15 April 2025
Fig. 10
Correlation of eigenvalues between genuine and original HOFC networks.
Image
NSE of dynamic high-order network.
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Cerebral Cortex
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Changes in information segregation and integration of aMCI based on low- and high-order functional connectivity
Published: 15 April 2025
Fig. 12
NSE of dynamic high-order network.
Image
Constructing low- and high-order networks.
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Cerebral Cortex
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Changes in information segregation and integration of aMCI based on low- and high-order functional connectivity
Published: 15 April 2025
Fig. 1
Constructing low- and high-order networks.
Image
Connection diagram of LOFC network.
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Cerebral Cortex
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Changes in information segregation and integration of aMCI based on low- and high-order functional connectivity
Published: 15 April 2025
Fig. 3
Connection diagram of LOFC network.
Image
Global eigenvalues of LOFC network.
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in
Cerebral Cortex
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Changes in information segregation and integration of aMCI based on low- and high-order functional connectivity
Published: 15 April 2025
Fig. 4
Global eigenvalues of LOFC network.
Image
Correlation of eigenvalues between genuine LOFC and original networks.
Get access
in
Cerebral Cortex
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Changes in information segregation and integration of aMCI based on low- and high-order functional connectivity
Published: 15 April 2025
Fig. 6
Correlation of eigenvalues between genuine LOFC and original networks.
Image
Connection diagram of HOFC network.
Get access
in
Cerebral Cortex
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Changes in information segregation and integration of aMCI based on low- and high-order functional connectivity
Published: 15 April 2025
Fig. 7
Connection diagram of HOFC network.
Image
Nodal eigenvalues of HOFC network.
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in
Cerebral Cortex
>
Changes in information segregation and integration of aMCI based on low- and high-order functional connectivity
Published: 15 April 2025
Fig. 9
Nodal eigenvalues of HOFC network.
Image
Evaluation of deep layer signal during passive movements using VASO A) The ...
Published: 14 April 2025
Fig. 2
Evaluation of deep layer signal during passive movements using VASO A) The first column shows the depth map and ROI used to extract VASO and EPI-BOLD laminar profiles for this example subject. The second columns show raw percent signal change maps for each condition, and the third column shows corre
Journal Article
The laminar pattern of proprioceptive activation in human primary motor cortex
Lasse Knudsen and others
Cerebral Cortex, Volume 35, Issue 4, April 2025, bhaf076, https://doi.org/10.1093/cercor/bhaf076
Published: 14 April 2025
Image
Study overview. A) Model of possible M1 microcircuitry, based on animal lit...
Published: 14 April 2025
Fig. 1
Study overview. A) Model of possible M1 microcircuitry, based on animal literature (references listed in main text). Most input to M1 arrives in superficial layers, and the majority of output (corticofugal) originates from deep layers. The strong intracolumnar projection from superficial to deep lay