paper-with-me

홈 › Papers

Contextual guidance: An integrated theory for astrocytes function in brain circuits and behavior

2022-11-17 · Ciaran Murphy-Royal, ShiNung Ching, Thomas Papouin

The participation of astrocytes in brain computation was formally hypothesized in 1992, coinciding with the discovery that these glial cells display a complex form of Ca2+ excitability. This fostered conceptual advances centered on the notion of reciprocal interactions between neurons and astrocytes, which permitted a critical leap forward in uncovering many roles of astrocytes in brain circuits, and signaled the rise of a major new force in neuroscience: that of glial biology. In the past decade, a multitude of unconventional and disparate functions of astrocytes have been documented that are not predicted by these canonical models and that are challenging to piece together into a holistic and parsimonious picture. This highlights a disconnect between the rapidly evolving field of astrocyte biology and the conceptual frameworks guiding it, and emphasizes the need for a careful reconsideration of how we theorize the functional position of astrocytes in brain circuitry. Here, we propose a unifying, highly transferable, data-driven, and computationally-relevant conceptual framework for astrocyte biology, which we coin contextual guidance. It describes astrocytes as contextual gates that decode multiple environmental factors to shape neural circuitry in an adaptive, state-dependent fashion. This paradigm is organically inclusive of all fundamental features of astrocytes, many of which have remained unaccounted for in previous theories. We find that this new concept provides an intuitive and powerful theoretical space to improve our understanding of brain function and computational models thereof across scales because it depicts astrocytes as a hub for circumstantial inputs into relevant specialized circuits that permits adaptive behaviors at the network and organism level.

📄 PDF Abstract BibTeX arXiv:2211.09906

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

Astrocytes as a mechanism for meta-plasticity and contextually-guided network function

2023-11-06 · Lulu Gong, Fabio Pasqualetti, Thomas Papouin, ShiNung Ching

Astrocytes are a ubiquitous and enigmatic type of non-neuronal cell and are found in the brain of all vertebrates. While traditionally viewed as being supportive of neurons, it is increasingly recognized that astrocytes …

Emergent dynamics in an astrocyte-neuronal network coupled via nitric oxide

2022-03-14 · Bhanu Sharma, Spandan Kumar, Subhendu Ghosh, Vikram Singh

In the brain, both neurons and glial cells work in conjunction with each other during information processing. Stimulation of neurons can cause calcium oscillations in astrocytes which in turn can affect neuronal calcium …

Complex non-Markovian dynamics and the dual role of astrocytes in Alzheimer's disease development and propagation

2022-08-06 · Swadesh Pal, Roderick Melnik

Alzheimer's disease (AD) is a common neurodegenerative disorder nowadays. Amyloid-beta (A$\beta$) and tau proteins are among the main contributors to the development or propagation of AD. In AD, A$\beta$ proteins clump t…

Astrocytic Ion Dynamics: Implications for Potassium Buffering and Liquid Flow

2016-06-09 · Geir Halnes, Klas H. Pettersen, Leiv Øyehaug, Marie E. Rognes 외

We review modeling of astrocyte ion dynamics with a specific focus on the implications of so-called spatial potassium buffering, where excess potassium in the extracellular space (ECS) is transported away to prevent path…

The Causal Role of Astrocytes in Slow-Wave Rhythmogenesis: A Computational Modelling Study

2017-02-13 · Leo Kozachkov, Konstantinos P. Michmizos

Finding the origin of slow and infra-slow oscillations could reveal or explain brain mechanisms in health and disease. Here, we present a biophysically constrained computational model of a neural network where the inclus…