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注意力的跨模态操控对猴子体感皮层神经元对触觉刺激反应的影响。

Effects of a cross-modal manipulation of attention on somatosensory cortical neuronal responses to tactile stimuli in the monkey.

作者信息

Meftah El-Mehdi, Shenasa Jafar, Chapman C Elaine

机构信息

Centre de Recherche en Sciences Neurologiques, Département de Physiologie, Montreal, Quebec H3T 1J4, Canada.

出版信息

J Neurophysiol. 2002 Dec;88(6):3133-49. doi: 10.1152/jn.00121.2002.

Abstract

The role of attention in modulating tactile sensitivity in primary (SI) and secondary somatosensory cortex (SII) was addressed using a cross-modal manipulation of attention, somatosensory versus visual. Two adult monkeys (Macaca mulatta) were trained to perform two tasks: tactile discrimination of a change in the texture of a surface presented to digits 3 and 4 and visual discrimination of a change in the intensity of a light. In each trial, standard texture (2 mm spatial period, SP) and visual stimuli were presented. These were followed by an increase in SP and/or luminance. Each trial was preceded by an instruction cue (colored light) that directed the animal to attend and respond to the change in one modality while ignoring any change in the other modality. The two tasks were interleaved during the recording, on a trial-by-trial basis. Extracellular recordings were made from 178 neurons (SI, 102; SII, 76), all with a cutaneous receptive field on the stimulated digit tips. Discharge was quantified in both tasks during the instruction, the standard-stimuli, and the texture-change periods. The results showed that selective attention to tactile stimuli had qualitatively and quantitatively greater and earlier effects in SII than SI. Twenty-four of 102 SI cells showed a significant change in discharge with the direction of attention. For almost all cells (20/24), discharge was enhanced when attention was directed toward the tactile stimuli; the effects were most frequent in the analysis interval that encompassed the change in SP (16/24). A significantly higher proportion of SII cells were attention-sensitive (47/76). The effects were concentrated in the texture-change period (39/47) but also included earlier periods in the trial (instruction period, n = 15; standard-stimuli period, n = 32). Attention-related modulation that spanned all three intervals (n = 11) likely reflected baseline changes in discharge. For the texture-sensitive cells (43 in SI, 37 in SII), the mean change in discharge frequency (post texture change - pre-texture change) in each task was significantly increased in SII but not SI with selective attention. The results are consistent with a two-stage modulation of parietal cortical discharge, an initial stage (SI) in which there is some enhancement of sensory responses to the salient feature, the texture change, and a second stage (SII) in which baseline changes occur, along with further feature selection. These controls may be independently exerted on SI and SII, or they may reflect top-down controls from SII to SI.

摘要

通过对注意力进行跨模态操作(触觉与视觉),研究了注意力在调节初级体感皮层(SI)和次级体感皮层(SII)触觉敏感性中的作用。训练两只成年猕猴(恒河猴)执行两项任务:对呈现给第3和第4指的表面质地变化进行触觉辨别,以及对光强度变化进行视觉辨别。在每次试验中,先呈现标准质地(2毫米空间周期,SP)和视觉刺激。随后SP和/或亮度增加。每次试验之前会有一个指示线索(彩色光),引导动物关注并对一种模态的变化做出反应,同时忽略另一种模态的任何变化。在记录过程中,两项任务逐次交替进行。从178个神经元(SI区102个,SII区76个)进行细胞外记录,所有神经元在受刺激的指尖均有皮肤感受野。在指示期、标准刺激期和质地变化期,对两项任务中的放电情况进行量化。结果表明,与SI相比,选择性关注触觉刺激在SII中具有在质量和数量上更大且更早的影响。102个SI细胞中有24个显示随着注意力方向的改变放电有显著变化。对于几乎所有细胞(24个中的20个),当注意力指向触觉刺激时放电增强;在包含SP变化的分析间隔内这种影响最为频繁(24个中的16个)。SII细胞中对注意力敏感的比例显著更高(76个中的47个)。这些影响集中在质地变化期(47个中的39个),但也包括试验的早期阶段(指示期,n = 15;标准刺激期,n = 32)。跨越所有三个间隔的与注意力相关的调制(n = 11)可能反映了放电的基线变化。对于对质地敏感的细胞(SI区43个,SII区37个),在选择性关注时,SII中每个任务的放电频率平均变化(质地变化后 - 质地变化前)显著增加,而SI中没有。结果与顶叶皮层放电的两阶段调制一致,第一阶段(SI)对显著特征(质地变化)的感觉反应有一些增强,第二阶段(SII)发生基线变化,同时进行进一步的特征选择。这些控制可能独立作用于SI和SII,或者它们可能反映从SII到SI的自上而下的控制。

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