: Nowadays, in vitro three-dimensional (3D) neuronal networks are becoming a consolidated experimental model to overcome most of the intrinsic limitations of bi-dimensional (2D) assemblies. In the 3D environment, experimental evidence revealed a wider repertoire of activity patterns, characterized by a modulation of the bursting features, than...
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2023 (v1)PublicationUploaded on: October 11, 2023
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2022 (v1)Publication
The delivery of electrical stimuli is crucial to shape the electrophysiological activity of neuronal populations and to appreciate the response of the different brain circuits involved. In the present work, we used dissociated cortical and hippocampal networks coupled to Micro-Electrode Arrays (MEAs) to investigate the features of their evoked...
Uploaded on: March 27, 2023 -
2021 (v1)Publication
The huge connectivity of the brain and the cellular diversity, which characterize the neuronal populations in the different anatomical districts, are considered two of the main sources originating the complex patterns of electrophysiological activity. Despite the advancements in neurotechnologies, which allowed investigating the brain...
Uploaded on: April 14, 2023 -
2023 (v1)Publication
: Three-dimensionality has been proven extensively to be critical in the development of a reliable model for different anatomical compartments and for many diseases. Currently, we can produce implantable structures that help in the regeneration of different tissues such as bone and heart. Different is the situation when we consider the neuronal...
Uploaded on: February 17, 2024 -
2024 (v1)Publication
Three-dimensionality (3D) was proven essential for developing reliable models for different anatomical compartments and many diseases. However, the neuronal compartment still poses a great challenge as we still do not understand precisely how the brain computes information and how the complex chain of neuronal events can generate conscious...
Uploaded on: September 7, 2024 -
2023 (v1)Publication
IntroductionThe goal of this work is to prove the relevance of the experimental model (in vitro neuronal networks in this study) when drug-delivery testing is performed. MethodsWe used dissociated cortical and hippocampal neurons coupled to Micro-Electrode Arrays (MEAs) arranged in different configurations characterized by modularity (i.e., the...
Uploaded on: October 11, 2023 -
2023 (v1)Publication
: Goal of this work is to show how the developmental conditions of in vitro neuronal networks influence the effect of drug delivery. The proposed experimental neuronal model consists of dissociated cortical neurons plated to Micro-Electrode Arrays (MEAs) and grown according to different conditions (i.e., by varying both the adopted culture...
Uploaded on: February 17, 2024 -
2024 (v1)Publication
Introduction The human brain is an intricate structure composed of interconnected modular networks, whose organization is known to balance the principles of segregation and integration, enabling rapid information exchange and the generation of coherent brain states. Segregation involves the specialization of brain regions for specific tasks,...
Uploaded on: October 21, 2024