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人类躯体感觉皮层的功能神经影像学研究。

Functional neuroimaging studies of human somatosensory cortex.

作者信息

McGlone Francis, Kelly Edward F, Trulsson Mats, Francis Susan T, Westling Göran, Bowtell Richard

机构信息

Centre for Cognitive Neuroscience, University of Wales, Bangor, LL57 2DG, UK.

出版信息

Behav Brain Res. 2002 Sep 20;135(1-2):147-58. doi: 10.1016/s0166-4328(02)00144-4.

Abstract

Two studies were carried out to assess the applicability of echoplanar fMRI at 3.0 T to the analysis of somatosensory mechanisms in humans. Vibrotactile stimulation of the tips of digits two and five reliably generated significant clusters of activation in primary (SI) and secondary (SII) somatosensory cortex, area 43, the pre-central gyrus, posterior insula, posterior parietal cortex and posterior cingulate. Separation of these responses by digit in SI was possible in all subjects and the activation sites reflected the known lateral position of the representation of digit 2 relative to that of digit 5. A second study employed microneurographic techniques in which individual median-nerve mechanoreceptive afferents were isolated, physiologically characterized, and microstimulated in conjunction with fMRI. Hemodynamic responses, observed in every case, were robust, focal, and physiologically orderly. These techniques will enable more detailed studies of the representation of the body surface in human somatosensory cortex, the relationship of that organization to short-term plasticity in responses to natural tactile stimuli, and effects of stimulus patterning and unimodal/cross-modal attentional manipulations. They also present unique opportunities to investigate the basic physiology of the BOLD effect, and to optimize the operating characteristics of two important human functional neuroimaging modalities-high-field fMRI and high-resolution EEG-in an unusually specific and well-characterized neurophysiological setting.

摘要

开展了两项研究,以评估3.0T回波平面功能磁共振成像(fMRI)在分析人类躯体感觉机制方面的适用性。对食指和小指指尖进行振动触觉刺激,在初级躯体感觉皮层(SI)、次级躯体感觉皮层(SII)、43区、中央前回、脑岛后部、顶叶后皮质和扣带回后部可靠地产生了显著的激活簇。在所有受试者中,都可以在SI中按手指区分这些反应,激活位点反映了已知的食指相对于小指代表区的外侧位置。第二项研究采用了微神经图技术,其中分离出单根正中神经机械感受传入纤维,进行生理特性分析,并结合fMRI进行微刺激。在每种情况下观察到的血液动力学反应都很强烈、局限且生理上有序。这些技术将能够更详细地研究人类躯体感觉皮层中体表的表征、该组织与对自然触觉刺激反应的短期可塑性之间的关系,以及刺激模式和单峰/跨峰注意力操纵的影响。它们还提供了独特的机会来研究血氧水平依赖(BOLD)效应的基本生理学,并在异常特定且特征明确的神经生理学环境中优化两种重要的人类功能神经成像模式——高场fMRI和高分辨率脑电图的操作特性。

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