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在同时进行触须和前肢刺激时,啮齿动物体感皮层的光学内在信号成像反应会受到调制。

Optical intrinsic signal imaging responses are modulated in rodent somatosensory cortex during simultaneous whisker and forelimb stimulation.

作者信息

Blood A J, Toga A W

机构信息

Department of Neurology, UCLA School of Medicine, Los Angeles, California 90095-1769, USA.

出版信息

J Cereb Blood Flow Metab. 1998 Sep;18(9):968-77. doi: 10.1097/00004647-199809000-00006.

Abstract

Optical intrinsic signal imaging (OIS) was used to investigate physiologic interactions between spatially and functionally distinct cortical somatosensory systems. The OIS response magnitude was evaluated after simultaneous stimulation of single whiskers and forelimb digits. Whisker C1 was deflected at a frequency of 10 Hz for 2 seconds while low- or high-intensity vibratory stimuli were applied to forelimb digits. The OIS responses to simultaneous whisker and forelimb stimulation were compared with lone whisker stimulated controls. Overall, addition of a second stimulus caused decreases in barrel cortex response magnitude. Three different response patterns were detected within individual trial sets. Modulation of barrel cortex evoked potentials provided evidence that changes in OIS responses observed here may be partially influenced by vascular responses to changes in neuronal activity. However, OIS responses in the barrel region during lone forelimb stimulation that were unaccompanied by evoked potentials suggested the possibility of independent vascular dynamic influences on response modulation. This study demonstrates that cortical responses at the level of primary sensory processing may be significantly influenced by activity in adjacent regions. Furthermore, it reveals that vascular and neuronal characteristics of interregional modulation do not co-localize and may produce responses in which one component increases while the other decreases.

摘要

光学内在信号成像(OIS)被用于研究空间和功能上不同的皮质体感系统之间的生理相互作用。在同时刺激单个胡须和前肢趾时评估OIS反应幅度。以10赫兹的频率使胡须C1偏转2秒,同时向前肢趾施加低强度或高强度振动刺激。将对胡须和前肢同时刺激的OIS反应与单独刺激胡须的对照进行比较。总体而言,添加第二种刺激会导致桶状皮质反应幅度降低。在各个试验组中检测到三种不同的反应模式。桶状皮质诱发电位的调制提供了证据,表明此处观察到的OIS反应变化可能部分受血管对神经元活动变化的反应影响。然而,在单独前肢刺激期间桶状区域的OIS反应未伴随诱发电位,这表明血管动态对反应调制有独立影响的可能性。这项研究表明,初级感觉处理水平的皮质反应可能受到相邻区域活动的显著影响。此外,它揭示了区域间调制的血管和神经元特征并不共定位,并且可能产生一种成分增加而另一种成分减少的反应。

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