Fast compensatory functional network changes caused by reversible inactivation of monkey parietal cortex

PF Balan, A Gerits, Q Zhu, H Kolster, GA Orban… - Cerebral …, 2019 - academic.oup.com
The brain has a remarkable capacity to recover after lesions. However, little is known about
compensatory neural adaptations at the systems level. We addressed this question by …

Fast Compensatory Functional Network Changes Caused by Reversible Inactivation of Monkey Parietal Cortex

PF Balan, A Gerits, Q Zhu, H Kolster… - … cortex (New York …, 2019 - pubmed.ncbi.nlm.nih.gov
The brain has a remarkable capacity to recover after lesions. However, little is known about
compensatory neural adaptations at the systems level. We addressed this question by …

Fast Compensatory Functional Network Changes Caused by Reversible Inactivation of Monkey Parietal Cortex

PF Balan, A Gerits, Q Zhu, H Kolster, GA Orban… - Cerebral …, 2019 - academic.oup.com
The brain has a remarkable capacity to recover after lesions. However, little is known about
compensatory neural adaptations at the systems level. We addressed this question by …

Fast Compensatory Functional Network Changes Caused by Reversible Inactivation of Monkey Parietal Cortex.

PF Balan, A Gerits, Q Zhu, H Kolster… - Cerebral …, 2019 - search.ebscohost.com
The brain has a remarkable capacity to recover after lesions. However, little is known about
compensatory neural adaptations at the systems level. We addressed this question by …

[PDF][PDF] Fast compensatory functional network changes caused by reversible inactivation of monkey parietal cortex.

PF Balan, A Gerits, Q Zhu, H Kolster, GA Orban… - lirias.kuleuven.be
The brain has a remarkable capacity to recover after lesions. However, little is known about
compensatory neural adaptations at the systems level. We addressed this question by …

Fast compensatory functional network changes caused by reversible inactivation of monkey parietal cortex.

PF Balan, A Gerits, Q Zhu, H Kolster, GA Orban… - Cerebral …, 2019 - psycnet.apa.org
The brain has a remarkable capacity to recover after lesions. However, little is known about
compensatory neural adaptations at the systems level. We addressed this question by …

[引用][C] Fast Compensatory Functional Network Changes Caused by Reversible Inactivation of Monkey Parietal Cortex

P Balan, A Gerits, Q Zhu, H Kolster, GA Orban… - Cerebral …, 2019 - hal.science
Fast Compensatory Functional Network Changes Caused by Reversible Inactivation of
Monkey Parietal Cortex - Archive ouverte HAL Accéder directement au contenu …

[引用][C] Fast Compensatory Functional Network Changes Caused by Reversible Inactivation of Monkey Parietal Cortex

PF Balan, A Gerits, Q Zhu, H Kolster, GA Orban… - Cerebral Cortex, 2018 - cir.nii.ac.jp
Fast Compensatory Functional Network Changes Caused by Reversible Inactivation of Monkey
Parietal Cortex | CiNii Research CiNii 国立情報学研究所 学術情報ナビゲータ[サイニィ] 詳細へ移動 …

Fast Compensatory Functional Network Changes Caused by Reversible Inactivation of Monkey Parietal Cortex.

PF Balan, A Gerits, Q Zhu, H Kolster… - Cerebral Cortex (New …, 2019 - europepmc.org
The brain has a remarkable capacity to recover after lesions. However, little is known about
compensatory neural adaptations at the systems level. We addressed this question by …