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大鼠对直接和间接皮层刺激的血氧水平依赖性功能磁共振成像反应差异

Differences in the BOLD fMRI response to direct and indirect cortical stimulation in the rat.

作者信息

Austin V C, Blamire A M, Grieve S M, O'Neill M J, Styles P, Matthews P M, Sibson N R

机构信息

MRC Biochemical and Clinical Magnetic Resonance Unit, Department of Biochemistry, University of Oxford, Oxford, UK.

出版信息

Magn Reson Med. 2003 May;49(5):838-47. doi: 10.1002/mrm.10428.

Abstract

Functional MRI (fMRI) exploits a relationship between neuronal activity, metabolism, and cerebral blood flow to functionally map the brain. We have developed a model of direct cortical stimulation in the rat that can be combined with fMRI and used to compare the hemodynamic responses to direct and indirect cortical stimulation. Unilateral electrical stimulation of the rat hindpaw motor cortex, via stereotaxically positioned carbon-fiber electrodes, yielded blood oxygenation level-dependent (BOLD) fMRI signal changes in both the stimulated and homotypic contralateral motor cortices. The maximal signal intensity change in both cortices was similar (stimulated = 3.7 +/- 1.7%; contralateral = 3.2 +/- 1.0%), although the response duration in the directly stimulated cortex was significantly longer (48.1 +/- 5.7 sec vs. 19.0 +/- 5.3 sec). Activation of the contralateral cortex is likely to occur via stimulation of corticocortical pathways, as distinct from direct electrical stimulation, and the response profile is similar to that observed in remote (e.g., forepaw) stimulation fMRI studies. Differences in the neuronal pool activated, or neurovascular mediators released, may account for the more prolonged BOLD response observed in the directly stimulated cortex. This work demonstrates the combination of direct cortical stimulation in the rat with fMRI and thus extends the scope of rodent fMRI into brain regions inaccessible to peripheral stimulation techniques.

摘要

功能磁共振成像(fMRI)利用神经元活动、新陈代谢和脑血流量之间的关系来对大脑进行功能图谱绘制。我们已经开发出一种大鼠直接皮层刺激模型,该模型可与fMRI相结合,用于比较对直接和间接皮层刺激的血液动力学反应。通过立体定位的碳纤维电极对大鼠后爪运动皮层进行单侧电刺激,在受刺激的同侧和对侧运动皮层均产生了血氧水平依赖(BOLD)fMRI信号变化。尽管直接刺激皮层的反应持续时间明显更长(48.1±5.7秒对19.0±5.3秒),但两个皮层的最大信号强度变化相似(受刺激侧=3.7±1.7%;对侧=3.2±1.0%)。对侧皮层的激活可能是通过刺激皮质皮质通路发生的,这与直接电刺激不同,其反应特征与在远程(如前爪)刺激fMRI研究中观察到的相似。激活的神经元池或释放的神经血管介质的差异,可能解释了在直接刺激皮层中观察到的更长时间的BOLD反应。这项工作证明了大鼠直接皮层刺激与fMRI的结合,从而将啮齿动物fMRI的范围扩展到外周刺激技术无法触及的脑区。

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