TVB C++: A Fast and Flexible Back-End for The Virtual Brain

Fuente: arXiv
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Auteurs principaux: Martín, Ignacio, Zamora, Gorka, Fousek, Jan, Schirner, Michael, Ritter, Petra, Jirsa, Viktor, Deco, Gustavo, Patow, Gustavo
Format: Preprint
Publié: 2024
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author Martín, Ignacio
Zamora, Gorka
Fousek, Jan
Schirner, Michael
Ritter, Petra
Jirsa, Viktor
Deco, Gustavo
Patow, Gustavo
author_facet Martín, Ignacio
Zamora, Gorka
Fousek, Jan
Schirner, Michael
Ritter, Petra
Jirsa, Viktor
Deco, Gustavo
Patow, Gustavo
contents This paper introduces TVB C++, a streamlined and fast C++ Back-End for The Virtual Brain (TVB), a renowned platform and a benchmark tool for full-brain simulation. TVB C++ is engineered with speed as a primary focus while retaining the flexibility and ease of use characteristic of the original TVB platform. Positioned as a complementary tool, TVB serves as a prototyping platform, whereas TVB C++ becomes indispensable when performance is paramount, particularly for large-scale simulations and leveraging advanced computation facilities like supercomputers. Developed as a TVB-compatible Back-End, TVB C++ seamlessly integrates with the original TVB implementation, facilitating effortless usage. Users can easily configure TVB C++ to execute the same code as in TVB but with enhanced performance and parallelism capabilities.
format Preprint
id arxiv_https___arxiv_org_abs_2405_18788
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle TVB C++: A Fast and Flexible Back-End for The Virtual Brain
Martín, Ignacio
Zamora, Gorka
Fousek, Jan
Schirner, Michael
Ritter, Petra
Jirsa, Viktor
Deco, Gustavo
Patow, Gustavo
Neurons and Cognition
This paper introduces TVB C++, a streamlined and fast C++ Back-End for The Virtual Brain (TVB), a renowned platform and a benchmark tool for full-brain simulation. TVB C++ is engineered with speed as a primary focus while retaining the flexibility and ease of use characteristic of the original TVB platform. Positioned as a complementary tool, TVB serves as a prototyping platform, whereas TVB C++ becomes indispensable when performance is paramount, particularly for large-scale simulations and leveraging advanced computation facilities like supercomputers. Developed as a TVB-compatible Back-End, TVB C++ seamlessly integrates with the original TVB implementation, facilitating effortless usage. Users can easily configure TVB C++ to execute the same code as in TVB but with enhanced performance and parallelism capabilities.
title TVB C++: A Fast and Flexible Back-End for The Virtual Brain
topic Neurons and Cognition
url https://arxiv.org/abs/2405.18788