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Neuroimage. 2009 Mar;45(1 Suppl):S163-72. doi: 10.1016/j.neuroimage.2008.10.057. Epub 2008 Nov 13.
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Behavioral correlates of negative BOLD signal changes in the primary somatosensory cortex.初级体感皮层负性BOLD信号变化的行为相关性。
Neuroimage. 2008 Jul 15;41(4):1364-71. doi: 10.1016/j.neuroimage.2008.03.049. Epub 2008 Apr 8.
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What are you feeling? Using functional magnetic resonance imaging to assess the modulation of sensory and affective responses during empathy for pain.你有什么感受?利用功能磁共振成像评估在对疼痛产生共情时感觉和情感反应的调节。
PLoS One. 2007 Dec 12;2(12):e1292. doi: 10.1371/journal.pone.0001292.
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Motor deactivation in the human cortex and basal ganglia.人类皮层和基底神经节中的运动失活。
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Evolving knowledge of sex differences in brain structure, function, and chemistry.关于大脑结构、功能和化学方面性别差异的知识不断发展。
Biol Psychiatry. 2007 Oct 15;62(8):847-55. doi: 10.1016/j.biopsych.2007.03.001. Epub 2007 Jun 4.
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Biphasic hemodynamic responses influence deactivation and may mask activation in block-design fMRI paradigms.双相血流动力学反应会影响失活,并且可能在组块设计功能磁共振成像范式中掩盖激活。
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Modelling the role of excitatory and inhibitory neuronal activity in the generation of the BOLD signal.模拟兴奋性和抑制性神经元活动在脑血流动力学信号产生中的作用。
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功能失活:多个同侧大脑区域参与躯体感觉信息的处理。

Functional deactivations: multiple ipsilateral brain areas engaged in the processing of somatosensory information.

机构信息

Department of Neurology, University of Jena, Germany.

出版信息

Hum Brain Mapp. 2011 Jan;32(1):127-40. doi: 10.1002/hbm.21006.

DOI:10.1002/hbm.21006
PMID:21157879
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6870510/
Abstract

Somatosensory signals modulate activity throughout a widespread network in both of the brain hemispheres: the contralateral as well as the ipsilateral side of the brain relative to the stimulated limb. To analyze the ipsilateral somatosensory brain areas that are engaged during limb stimulation, we performed functional magnetic resonance imaging (fMRI) in 12 healthy subjects during electrical median nerve stimulation using both a block- and an event-related fMRI design. Data were analyzed through the use of model-dependent (SPM) and model-independent (ICA) approaches. Beyond the well-known positive blood oxygenation level-dependent (BOLD) responses, negative deflections of the BOLD response were found consistently in several ipsilateral brain areas, including the primary somatosensory cortex, the supplementary motor area, the insula, the dorsal part of the posterior cingulate cortex, and the contralateral cerebellum. Compared to their positive counterparts, the negative hemodynamic responses showed a different time course, with an onset time delay of 2.4 s and a peak delay of 0.7 s. This characteristic delay was observed in all investigated areas and verified by a second (purely tactile) event-related paradigm, suggesting a systematic difference for brain areas involved in the processing of somatosensory information. These findings may indicate that the physiological basis of these deactivations differs from that of the positive BOLD responses. Therefore, an altered model for the negative BOLD response may be beneficial to further model-dependent fMRI analyses.

摘要

躯体感觉信号调节大脑两个半球中广泛网络中的活动

与刺激肢体相对应的对侧以及同侧大脑。为了分析在肢体刺激过程中参与的同侧体感脑区,我们在 12 名健康受试者中进行了功能磁共振成像(fMRI)研究,使用 block- 和 event-related fMRI 设计进行电刺激正中神经。通过使用基于模型(SPM)和独立于模型(ICA)的方法分析数据。除了众所周知的正血氧水平依赖(BOLD)反应外,在几个同侧脑区(包括初级体感皮层、辅助运动区、岛叶、后扣带回皮质的背侧部分和对侧小脑)中,一致发现 BOLD 反应的负偏移。与正反应相比,负血流动力学反应具有不同的时程,起始时间延迟 2.4 秒,峰值延迟 0.7 秒。在所有研究的区域中都观察到了这种特征性的延迟,并通过第二个(纯触觉)事件相关范式得到了验证,这表明参与体感信息处理的脑区存在系统差异。这些发现可能表明这些去激活的生理基础与正 BOLD 反应不同。因此,负 BOLD 反应的改变模型可能有益于进一步的基于模型的 fMRI 分析。