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顶叶脑回的躯体感觉反应亢进和触觉意识缺失相汇聚。

Tonic somatosensory responses and deficits of tactile awareness converge in the parietal operculum.

机构信息

Istituto di Neuroscienze, Consiglio Nazionale delle Ricerche, 43125 Parma, Italy.

MANIBUS Laboratory, Department of Psychology, University of Turin, 10124 Turin, Italy.

出版信息

Brain. 2021 Dec 31;144(12):3779-3787. doi: 10.1093/brain/awab384.

Abstract

Although clinical neuroscience and the neuroscience of consciousness have long sought mechanistic explanations of tactile-awareness disorders, mechanistic insights are rare, mainly because of the difficulty of depicting the fine-grained neural dynamics underlying somatosensory processes. Here, we combined the stereo-EEG responses to somatosensory stimulation with the lesion mapping of patients with a tactile-awareness disorder, namely tactile extinction. Whereas stereo-EEG responses present different temporal patterns, including early/phasic and long-lasting/tonic activities, tactile-extinction lesion mapping co-localizes only with the latter. Overlaps are limited to the posterior part of the perisylvian regions, suggesting that tonic activities may play a role in sustaining tactile awareness. To assess this hypothesis further, we correlated the prevalence of tonic responses with the tactile-extinction lesion mapping, showing that they follow the same topographical gradient. Finally, in parallel with the notion that visuotactile stimulation improves detection in tactile-extinction patients, we demonstrated an enhancement of tonic responses to visuotactile stimuli, with a strong voxel-wise correlation with the lesion mapping. The combination of these results establishes tonic responses in the parietal operculum as the ideal neural correlate of tactile awareness.

摘要

尽管临床神经科学和意识神经科学长期以来一直寻求对触觉意识障碍的机械论解释,但机械论的见解却很少见,主要是因为难以描绘体感过程的细微神经动力学。在这里,我们将体感刺激的立体 EEG 反应与触觉意识障碍患者(即触觉缺失)的病变映射相结合。立体 EEG 反应呈现出不同的时间模式,包括早期/相位和持续时间较长/紧张活动,而触觉缺失病变映射仅与后者共定位。重叠仅限于外侧裂周围区域的后部,这表明紧张活动可能在维持触觉意识中起作用。为了进一步评估这一假设,我们将紧张反应的出现频率与触觉缺失病变映射相关联,结果表明它们遵循相同的地形梯度。最后,与视觉触觉刺激可提高触觉缺失患者的检测能力的观点一致,我们证明了对视觉触觉刺激的紧张反应增强,与病变映射具有很强的体素相关性。这些结果的结合将顶叶脑岛的紧张反应确立为触觉意识的理想神经相关物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c7fc/8719842/59d44e2d1bd0/awab384f1.jpg

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