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在跨时间尺度估计的神经元功能连接的相似性上。

On the similarity of functional connectivity between neurons estimated across timescales.

机构信息

Department of Physical Medicine and Rehabilitation, Rehabilitation Institute of Chicago, Chicago, Illinois, United States of America.

出版信息

PLoS One. 2010 Feb 18;5(2):e9206. doi: 10.1371/journal.pone.0009206.

Abstract

A central objective in neuroscience is to understand how neurons interact. Such functional interactions have been estimated using signals recorded with different techniques and, consequently, different temporal resolutions. For example, spike data often have sub-millisecond resolution while some imaging techniques may have a resolution of many seconds. Here we use multi-electrode spike recordings to ask how similar functional connectivity inferred from slower timescale signals is to the one inferred from fast timescale signals. We find that functional connectivity is relatively robust to low-pass filtering--dropping by about 10% when low pass filtering at 10 hz and about 50% when low pass filtering down to about 1 Hz--and that estimates are robust to high levels of additive noise. Moreover, there is a weak correlation for physiological filters such as hemodynamic or Ca2+ impulse responses and filters based on local field potentials. We address the origin of these correlations using simulation techniques and find evidence that the similarity between functional connectivity estimated across timescales is due to processes that do not depend on fast pair-wise interactions alone. Rather, it appears that connectivity on multiple timescales or common-input related to stimuli or movement drives the observed correlations. Despite this qualification, our results suggest that techniques with intermediate temporal resolution may yield good estimates of the functional connections between individual neurons.

摘要

神经科学的一个主要目标是了解神经元如何相互作用。这种功能相互作用是使用不同技术记录的信号来估计的,因此具有不同的时间分辨率。例如,尖峰数据通常具有亚毫秒级的分辨率,而某些成像技术的分辨率可能为数秒。在这里,我们使用多电极尖峰记录来询问从较慢时间尺度信号推断出的功能连接与从较快时间尺度信号推断出的功能连接有多么相似。我们发现功能连接相对稳健,对低通滤波的影响较小——在 10 Hz 时低通滤波大约减少 10%,在 1 Hz 左右时低通滤波大约减少 50%——并且估计对高电平的加性噪声具有鲁棒性。此外,对于生理滤波器(如血流动力学或 Ca2+脉冲响应)和基于局部场电位的滤波器,存在弱相关性。我们使用仿真技术解决了这些相关性的起源问题,并发现证据表明,跨时间尺度估计的功能连接之间的相似性是由于不单独依赖于快速的两两相互作用的过程。相反,似乎是多个时间尺度上的连接或与刺激或运动相关的共同输入驱动了观察到的相关性。尽管存在这种限定,但我们的结果表明,具有中等时间分辨率的技术可能会很好地估计单个神经元之间的功能连接。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68a7/2823767/2751fc7053f7/pone.0009206.g001.jpg

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