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人类体感皮层中触觉信息的时空整合

Spatiotemporal integration of tactile information in human somatosensory cortex.

作者信息

Zhu Zhao, Disbrow Elizabeth A, Zumer Johanna M, McGonigle David J, Nagarajan Srikantan S

机构信息

Biomagnetic Imaging Laboratory, Department of Radiology, University of California, San Francisco, San Francisco, CA, 94143-0628, USA.

出版信息

BMC Neurosci. 2007 Mar 14;8:21. doi: 10.1186/1471-2202-8-21.

Abstract

BACKGROUND

Our goal was to examine the spatiotemporal integration of tactile information in the hand representation of human primary somatosensory cortex (anterior parietal somatosensory areas 3b and 1), secondary somatosensory cortex (S2), and the parietal ventral area (PV), using high-resolution whole-head magnetoencephalography (MEG). To examine representational overlap and adaptation in bilateral somatosensory cortices, we used an oddball paradigm to characterize the representation of the index finger (D2; deviant stimulus) as a function of the location of the standard stimulus in both right- and left-handed subjects.

RESULTS

We found that responses to deviant stimuli presented in the context of standard stimuli with an interstimulus interval (ISI) of 0.33 s were significantly and bilaterally attenuated compared to deviant stimulation alone in S2/PV, but not in anterior parietal cortex. This attenuation was dependent upon the distance between the deviant and standard stimuli: greater attenuation was found when the standard was immediately adjacent to the deviant (D3 and D2 respectively), with attenuation decreasing for non-adjacent fingers (D4 and opposite D2). We also found that cutaneous mechanical stimulation consistently elicited not only a strong early contralateral cortical response but also a weak ipsilateral response in anterior parietal cortex. This ipsilateral response appeared an average of 10.7 +/- 6.1 ms later than the early contralateral response. In addition, no hemispheric differences either in response amplitude, response latencies or oddball responses were found, independent of handedness.

CONCLUSION

Our findings are consistent with the large receptive fields and long neuronal recovery cycles that have been described in S2/PV, and suggest that this expression of spatiotemporal integration underlies the complex functions associated with this region. The early ipsilateral response suggests that anterior parietal fields also receive tactile input from the ipsilateral hand. The lack of a hemispheric difference in responses to digit stimulation supports a lack of any functional asymmetry in human somatosensory cortex.

摘要

背景

我们的目标是使用高分辨率全头磁脑图(MEG),研究人类初级躯体感觉皮层(顶叶前躯体感觉区3b和1)、次级躯体感觉皮层(S2)和顶叶腹侧区(PV)对手部触觉信息的时空整合。为了研究双侧躯体感觉皮层中的表征重叠和适应性,我们使用了一种奇偶数范式来表征食指(D2;偏差刺激)的表征,该表征是右利手和左利手受试者中标准刺激位置的函数。

结果

我们发现,与单独的偏差刺激相比,在S2/PV中,当刺激间隔(ISI)为0.33秒时,在标准刺激背景下呈现的偏差刺激的反应在双侧均显著减弱,但在前顶叶皮层中没有减弱。这种减弱取决于偏差刺激和标准刺激之间的距离:当标准刺激紧邻偏差刺激时(分别为D3和D2),减弱程度更大,对于不相邻的手指(D4和对侧D2),减弱程度减小。我们还发现,皮肤机械刺激不仅始终在前顶叶皮层中引发强烈的早期对侧皮层反应,还引发微弱的同侧反应。这种同侧反应比早期对侧反应平均晚出现10.7±6.1毫秒。此外,无论利手情况如何,在反应幅度、反应潜伏期或奇偶数反应方面均未发现半球差异。

结论

我们的研究结果与S2/PV中描述的大感受野和长神经元恢复周期一致,并表明这种时空整合的表现形式是该区域相关复杂功能的基础。早期同侧反应表明前顶叶区域也接收来自同侧手的触觉输入。对数字刺激反应中缺乏半球差异支持了人类躯体感觉皮层中不存在任何功能不对称性的观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/725b/1838913/33ae21622fde/1471-2202-8-21-1.jpg

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