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一种用于脑组织中快速且可访问的光传播建模的开源复制。

An open-source replication for fast and accessible light propagation modeling in brain tissue.

作者信息

Berling David, Střeleček Jan, Iser Tomáš, Antolík Ján

机构信息

Faculty of Mathematics and Physics, Charles University, Prague, Czechia.

出版信息

PLoS One. 2025 Sep 2;20(9):e0330681. doi: 10.1371/journal.pone.0330681. eCollection 2025.

Abstract

Light simulations hold great potential for advancing optical techniques in neuroscience. They facilitate the in-silico refinement of optical stimulator designs and enable simulations of optical recordings from computational brain models, aiding neuroscience in forming a mechanistic understanding of brain circuitry. However, many published light models are inaccessible due to unavailable source code and documentation or are impractical due to excessive computational demands. To address these challenges, we replicate and enhance the efficient and accurate light simulation model by Yona et al. [1], which was previously available only in compiled form accompanied by sparse documentation. In this work, we resolve ambiguities in the original model, correct errors that caused discrepancies between simulations and published results, improve computational efficiency by an order of magnitude, and open-source all the resulting code and detailed documentation. These enhancements enable simulations of cortical volumes exceeding [Formula: see text] to run in seconds on standard laptop hardware. Our model software provides an accessible, adaptable, and rapid light simulation tool, which adheres to FAIR principles to ensure future-proof and broad utility for the neuroscience community.

摘要

光模拟在推进神经科学中的光学技术方面具有巨大潜力。它们有助于在计算机上对光学刺激器设计进行优化,并能够对来自计算脑模型的光学记录进行模拟,有助于神经科学对脑回路形成机制性理解。然而,由于源代码和文档不可用,许多已发表的光模型无法获取,或者由于计算需求过高而不实用。为应对这些挑战,我们复制并改进了约纳等人[1]提出的高效且准确的光模拟模型,该模型之前仅以编译形式提供,文档稀少。在这项工作中,我们解决了原始模型中的模糊之处,纠正了导致模拟结果与已发表结果存在差异的错误,将计算效率提高了一个数量级,并将所有生成的代码和详细文档开源。这些改进使得对超过[公式:见原文]的皮质体积进行模拟能够在标准笔记本电脑硬件上在数秒内运行。我们的模型软件提供了一个易于使用、可适应且快速的光模拟工具,该工具遵循FAIR原则,以确保为神经科学界提供面向未来且广泛适用的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54a8/12404466/bb4b994ddcad/pone.0330681.g001.jpg

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