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低强度经颅磁刺激增强视觉刺激感知。

Low Intensity TMS Enhances Perception of Visual Stimuli.

机构信息

School of Psychology, University of Sydney, Australia; Lab for Human Systems Neuroscience, RIKEN Brain Science Institute, Japan.

School of Psychology, University of Sydney, Australia; School of Psychology, University of New South Wales, Australia.

出版信息

Brain Stimul. 2015 Nov-Dec;8(6):1175-82. doi: 10.1016/j.brs.2015.06.012. Epub 2015 Jun 27.

Abstract

BACKGROUND

Transcranial magnetic stimulation (TMS) is a popular functional mapping tool in cognitive and sensory neuroscience. While strong TMS typically degrades performance, two recent studies have demonstrated that weak TMS, delivered to visual cortex, can improve performance on simple visual tasks. The improvement was interpreted as the summation of visually-evoked and TMS-elicited neuronal activity in visual cortex, but the nature of this interaction remains unclear.

OBJECTIVE

The present experiments sought to determine whether these weak pulses of TMS assist subjects to see the visual stimulus itself or create a distinct "melded" percept that may not be recognizable as the visual stimulus.

METHODS

We measured contrast thresholds in an orientation discrimination task in which participants reported the orientation (left or right) of gratings tilted 45° from vertical.

RESULTS

Weak TMS improved sensitivity for identifying gratings, suggesting that TMS sums with but preserves orientation information so that the subject can recognize the visual stimulus. We explain the effect using a mechanism of non-linear transduction of sensory signals in the brain.

CONCLUSIONS

The capability of low-intensity TMS to augment the neural signal while preserving information encoded in the stimulus can be employed as a novel approach to study the neural correlates of consciousness by selectively "pushing" an unconscious stimulus into consciousness.

摘要

背景

经颅磁刺激(TMS)是认知和感觉神经科学中常用的功能映射工具。虽然强 TMS 通常会降低性能,但最近的两项研究表明,弱 TMS 施加于视觉皮层可以提高简单视觉任务的表现。这种改善被解释为视觉诱发和 TMS 诱发的神经元活动在视觉皮层中的总和,但这种相互作用的性质仍不清楚。

目的

本实验旨在确定这些弱 TMS 脉冲是否有助于受试者看到视觉刺激本身,还是产生一种可能无法识别为视觉刺激的独特“融合”感知。

方法

我们在一个方向辨别任务中测量了对比度阈值,在这个任务中,参与者报告倾斜 45 度的光栅的方向(左或右)。

结果

弱 TMS 提高了识别光栅的敏感性,表明 TMS 与但保留了方向信息,因此受试者可以识别视觉刺激。我们使用大脑中感觉信号的非线性转导机制来解释这种效应。

结论

低强度 TMS 增强神经信号的能力,同时保留刺激中编码的信息,可以作为一种新的方法来研究意识的神经相关性,通过选择性地将无意识刺激“推”入意识。

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