人类新皮层神经求解器(HNN),一种用于解释人类 MEG/EEG 数据的细胞和网络起源的新软件工具。

Human Neocortical Neurosolver (HNN), a new software tool for interpreting the cellular and network origin of human MEG/EEG data.

机构信息

Department Neuroscience, Carney Institute for Brain Sciences, Brown University, Providence, United States.

Center for Biomedical Imaging and Neuromodulation, Nathan S. Kline Institute for Psychiatric Research, Orangeburg, United States.

出版信息

Elife. 2020 Jan 22;9:e51214. doi: 10.7554/eLife.51214.

Abstract

Magneto- and electro-encephalography (MEG/EEG) non-invasively record human brain activity with millisecond resolution providing reliable markers of healthy and disease states. Relating these macroscopic signals to underlying cellular- and circuit-level generators is a limitation that constrains using MEG/EEG to reveal novel principles of information processing or to translate findings into new therapies for neuropathology. To address this problem, we built Human Neocortical Neurosolver (HNN, https://hnn.brown.edu) software. HNN has a graphical user interface designed to help researchers and clinicians interpret the neural origins of MEG/EEG. HNN's core is a neocortical circuit model that accounts for biophysical origins of electrical currents generating MEG/EEG. Data can be directly compared to simulated signals and parameters easily manipulated to develop/test hypotheses on a signal's origin. Tutorials teach users to simulate commonly measured signals, including event related potentials and brain rhythms. HNN's ability to associate signals across scales makes it a unique tool for translational neuroscience research.

摘要

磁和脑电图(MEG/EEG)以毫秒级分辨率无创地记录人脑活动,提供健康和疾病状态的可靠标志物。将这些宏观信号与潜在的细胞和电路水平的发生器联系起来是一个限制,这限制了使用 MEG/EEG 来揭示信息处理的新原理,或将研究结果转化为神经病理学的新疗法。为了解决这个问题,我们构建了 Human Neocortical Neurosolver(HNN,https://hnn.brown.edu)软件。HNN 具有图形用户界面,旨在帮助研究人员和临床医生解释 MEG/EEG 的神经起源。HNN 的核心是一个皮质电路模型,它解释了产生 MEG/EEG 的电流的生物物理起源。可以将数据与模拟信号直接进行比较,并轻松操纵参数,以对信号的起源进行假设测试。教程教用户模拟常见的测量信号,包括事件相关电位和脑节律。HNN 能够在不同尺度上关联信号,使其成为转化神经科学研究的独特工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f018/7018509/a02604a0fcbd/elife-51214-fig1.jpg

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