paper-with-me

홈 › Papers

The distribution of inhibitory neurons in the C. elegans connectome facilitates self-optimization of coordinated neural activity

2020-10-28 · Alejandro Morales, Tom Froese

The nervous system of the nematode soil worm Caenorhabditis elegans exhibits remarkable complexity despite the worm's small size. A general challenge is to better understand the relationship between neural organization and neural activity at the system level, including the functional roles of inhibitory connections. Here we implemented an abstract simulation model of the C. elegans connectome that approximates the neurotransmitter identity of each neuron, and we explored the functional role of these physiological differences for neural activity. In particular, we created a Hopfield neural network in which all of the worm's neurons characterized by inhibitory neurotransmitters are assigned inhibitory outgoing connections. Then, we created a control condition in which the same number of inhibitory connections are arbitrarily distributed across the network. A comparison of these two conditions revealed that the biological distribution of inhibitory connections facilitates the self-optimization of coordinated neural activity compared with an arbitrary distribution of inhibitory connections.

📄 PDF Abstract BibTeX arXiv:2010.15272

Code (0)

등록된 구현이 없습니다.

Similar Papers 제목 키워드 기반

The growing topology of the C. elegans connectome

2020-12-31 · Alec Helm, Ann S. Blevins, Danielle S. Bassett

Probing the developing neural circuitry in Caenorhabditis elegans has enhanced our understanding of nervous systems. The C. elegans connectome, like those of other species, is characterized by a rich club of densely conn…

Synaptic polarity and sign-balance prediction using gene expression data in the Caenorhabditis elegans chemical synapse neuronal connectome network

2021-01-13 · Bank G. Fenyves, Gabor S. Szilagyi, Zsolt Vassy, Csaba Soti 외

Graph theoretical analyses of nervous systems usually omit the aspect of connection polarity, due to data insufficiency. The chemical synapse network of Caenorhabditis elegans is a well-reconstructed directed network, bu…

Inhibitory feedback from the motor circuit gates mechanosensory processing in C. elegans

2023-01-06 · Sandeep Kumar, Anuj K Sharma, Andrew Tran, Andrew M Leifer

Animals must integrate sensory cues with their current behavioral context to generate a suitable response. How this integration occurs is poorly understood. Previously we developed high throughput methods to probe neural…

Homogenized $\textit{C. elegans}$ Neural Activity and Connectivity Data

2024-11-18 · Quilee Simeon, Anshul Kashyap, Konrad P Kording, Edward S Boyden

There is renewed interest in modeling and understanding the nervous system of the nematode $\textit{Caenorhabditis elegans}$ ($\textit{C. elegans}$), as this small model system provides a path to bridge the gap between n…

Linking the connectome to action: Emergent dynamics in a robotic model of C. elegans

2020-11-18 · Carlos E. Valencia Urbina, Sergio A. Cannas, Pablo M. Gleiser

We analyse the neural dynamics and its relation with the emergent behaviour of a robotic vehicle that is controlled by a neural network numerical simulation based on the nervous system of the nematode Caenorhabditis eleg…