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神经血液动力学耦合中的长时间刺激和非线性

Long duration stimuli and nonlinearities in the neural-haemodynamic coupling.

作者信息

Martindale John, Berwick Jason, Martin Chris, Kong Yazhuo, Zheng Ying, Mayhew John

机构信息

SPiNSN, Psychology Department, University of Sheffield, Sheffield, UK.

出版信息

J Cereb Blood Flow Metab. 2005 May;25(5):651-61. doi: 10.1038/sj.jcbfm.9600060.

Abstract

Recent studies have shown that the haemodynamic responses to brief (<2 secs) stimuli can be well characterised as a linear convolution of neural activity with a suitable haemodynamic impulse response. In this paper, we show that the linear convolution model cannot predict measurements of blood flow responses to stimuli of longer duration (>2 secs), regardless of the impulse response function chosen. Modifying the linear convolution scheme to a nonlinear convolution scheme was found to provide a good prediction of the observed data. Whereas several studies have found a nonlinear coupling between stimulus input and blood flow responses, the current modelling scheme uses neural activity as an input, and thus implies nonlinearity in the coupling between neural activity and blood flow responses. Neural activity was assessed by current source density analysis of depth-resolved evoked field potentials, while blood flow responses were measured using laser Doppler flowmetry. All measurements were made in rat whisker barrel cortex after electrical stimulation of the whisker pad for 1 to 16 secs at 5 Hz and 1.2 mA (individual pulse width 0.3 ms).

摘要

最近的研究表明,对短暂(<2秒)刺激的血流动力学反应可以很好地被表征为神经活动与合适的血流动力学脉冲响应的线性卷积。在本文中,我们表明,无论选择何种脉冲响应函数,线性卷积模型都无法预测对持续时间较长(>2秒)刺激的血流反应测量值。将线性卷积方案修改为非线性卷积方案被发现可以很好地预测观测数据。虽然多项研究发现刺激输入与血流反应之间存在非线性耦合,但当前的建模方案使用神经活动作为输入,因此意味着神经活动与血流反应之间的耦合存在非线性。通过对深度分辨诱发场电位进行电流源密度分析来评估神经活动,同时使用激光多普勒血流仪测量血流反应。所有测量均在大鼠触须桶状皮层中进行,对触须垫进行5赫兹和1.2毫安(单个脉冲宽度0.3毫秒)的电刺激1至16秒后进行。

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