神经输入或处理在神经成像信号的大小中起更大的作用吗?

Frontiers in neuroenergetics Pub Date : 2010-08-11 eCollection Date: 2010-01-01 DOI:10.3389/fnene.2010.00015
Sam Harris, Myles Jones, Ying Zheng, Jason Berwick
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引用次数: 25

摘要

如何根据潜在的诱发活动来解释血液动力学神经成像信号(如fMRI)的一个重要限制是对实际产生血液动力学反应的神经血管耦合机制的理解。目前的主流观点是,血流动力学反应与突触输入和随后的神经处理最为相关,而不是与尖峰输出相关。在血流动力学反应的产生中,输入和处理哪个更重要尚不清楚。为了研究这一点,我们测量了局部注射GABA(A)激动剂muscimol前后大鼠须桶体感觉皮层对电刺激的血流动力学和神经反应。Muscimol不会影响丘脑皮质向皮质的输入,但会抑制随后的皮质内处理。预先注射muscimol须刺激引起预期的神经和伴随的血流动力学反应。注射muscimol后,尽管对刺激序列的每个脉冲的神经反应的时间分布是相似的,但与注射前相比,平均反应的幅度减少了约79%。须诱发的血流动力学反应减少了相应的幅度,这表明,尽管突触输入和皮层处理的神经血管耦合关系是相似的,但总体反应的幅度是由加工而不是仅由丘脑皮层输入产生的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Does neural input or processing play a greater role in the magnitude of neuroimaging signals?

An important constraint on how hemodynamic neuroimaging signals such as fMRI can be interpreted in terms of the underlying evoked activity is an understanding of neurovascular coupling mechanisms that actually generate hemodynamic responses. The predominant view at present is that the hemodynamic response is most correlated with synaptic input and subsequent neural processing rather than spiking output. It is still not clear whether input or processing is more important in the generation of hemodynamics responses. In order to investigate this we measured the hemodynamic and neural responses to electrical whisker pad stimuli in rat whisker barrel somatosensory cortex both before and after the local cortical injections of the GABA(A) agonist muscimol. Muscimol would not be expected to affect the thalamocortical input into the cortex but would inhibit subsequent intra-cortical processing. Pre-muscimol infusion whisker stimuli elicited the expected neural and accompanying hemodynamic responses to that reported previously. Following infusion of muscimol, although the temporal profile of neural responses to each pulse of the stimulus train was similar, the average response was reduced in magnitude by approximately 79% compared to that elicited pre-infusion. The whisker-evoked hemodynamic responses were reduced by a commensurate magnitude suggesting that, although the neurovascular coupling relationships were similar for synaptic input as well as for cortical processing, the magnitude of the overall response is dominated by processing rather than from that produced from the thalamocortical input alone.

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