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Non-Invasive Brain Stimulation Applied to Heschl's Gyrus Modulates Pitch Discrimination

机译:非侵入性脑刺激应用于赫施的回旋调节音高歧视。

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The neural basis of the human brain's ability to discriminate pitch has been investigated by functional neuroimaging and the study of lesioned brains, indicating the critical importance of right and left Heschl's gyrus (HG) in pitch perception. Nonetheless, there remains some uncertainty with regard to localization and lateralization of pitch discrimination, partly because neuroimaging results do not allow us to draw inferences about the causality. To address the problem of causality in pitch discrimination functions, we used transcranial direct current stimulation to downregulate (via cathodal stimulation) and upregulate (via anodal stimulation) excitability in either left or right auditory cortex and measured the effect on performance in a pitch discrimination task in comparison with sham stimulation. Cathodal stimulation of HG on the left and on the right hemispheres adversely affected pitch discrimination in comparison to sham stimulation, with the effect on the right being significantly stronger than on the left. Anodal stimulation on either side had no effect on performance in comparison to sham. Our results indicate that both left and right HG are causally involved in pitch discrimination, although the right auditory cortex might be a stronger contributor.
机译:通过功能性神经成像和病灶性大脑的研究,已经研究了人脑辨别音高能力的神经基础,这表明左右赫氏回旋(HG)在音高感知中至关重要。尽管如此,在音高辨别的本地化和横向化方面仍然存在一些不确定性,部分原因是神经影像学的结果不允许我们得出因果关系的推论。为了解决音高识别功能中因果关系的问题,我们使用经颅直流电刺激来降低(或通过阴极刺激)上下听觉皮层的兴奋性(通过阴极刺激)和上调(通过阳极刺激),并测量了音高识别任务中对表现的影响与假刺激相比。与假刺激相比,阴极在左侧和右侧半球上的HG刺激对音高辨别力产生不利影响,对右侧的影响明显强于左侧。与假手术相比,两侧的阳极刺激对性能均无影响。我们的研究结果表明,尽管右听皮层可能是更重要的因素,但左,右HG均与音高判别有因果关系。

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