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首页> 外文期刊>NeuroImage >Functional and structural aspects of tinnitus-related enhancement and suppression of auditory cortex activity.
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Functional and structural aspects of tinnitus-related enhancement and suppression of auditory cortex activity.

机译:耳鸣相关的功能和结构方面的增强和抑制听觉皮层活动。

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The steady-state auditory evoked magnetic field was recorded in tinnitus patients and controls, both either musicians or non-musicians, all of them with high-frequency hearing loss. Stimuli were AM-tones with two modulation frequencies and three carrier frequencies matching the "audiometric edge", i.e. the frequency above which hearing loss increases more rapidly, the tinnitus frequency or the frequency 1 1/2 octaves above the audiometric edge in controls, and a frequency 1 1/2 octaves below the audiometric edge. Stimuli equated in carrier frequency, but differing in modulation frequency, were simultaneously presented to the two ears. The modulation frequency-specific components of the dual steady-state response were recovered by bandpass filtering. In both hemispheres, the source amplitude of the response was larger for contralateral than ipsilateral input. In non-musicians with tinnitus, this laterality effect was enhanced in the hemisphere contralateral and reduced in the hemisphere ipsilateral to the tinnitus ear, especially for the tinnitus frequency. The hemisphere-by-input laterality dominance effect was smaller in musicians than in non-musicians. In both patient groups, source amplitude change over time, i.e. amplitude slope, was increasing with tonal frequency for contralateral input and decreasing for ipsilateral input. However, slope was smaller for musicians than non-musicians. In patients, source amplitude was negatively correlated with the MRI-determined volume of the medial partition of Heschl's gyrus. Tinnitus patients show an altered excitatory-inhibitory balance reflecting the downregulation of inhibition and resulting in a steeper dominance hierarchy among simultaneous processes in auditory cortex. Direction and extent of this alteration are modulated by musicality and auditory cortex volume.
机译:在音乐家或非音乐家的耳鸣患者和对照组中均记录了稳态听觉诱发磁场,所有患者均患有高频听力损失。刺激是AM音调,具有两个与“听力测验边缘”匹配的调制频率和三个载波频率,即高于此频率时,听力损失会更快地增加,耳鸣频率或在控件中高于听力测验边缘的频率1 1/2八度。测听边缘以下1 1/2个八度的频率。两只耳朵同时受到载波频率相等但调制频率不同的刺激。双稳态响应的调制频率特定分量通过带通滤波恢复。在两个半球中,对侧输入的响应幅度大于同侧输入。在患有耳鸣的非音乐家中,这种偏侧效应在对侧耳的半球对侧增强,而在与耳鸣耳同侧的半球中减小,特别是对于耳鸣频率。与非音乐家相比,音乐人对输入半球的支配地位的影响要小。在两个患者组中,对侧输入的源振幅随时间变化,即振幅斜率随音调频率增加而对侧输入的信号振幅随时间的变化而减小。但是,音乐家的倾斜度要比非音乐家的斜度小。在患者中,源振幅与MRI确定的Heschl回旋内侧分区的体积呈负相关。耳鸣患者的兴奋性-抑制性平衡改变,反映了抑制作用的下调,并导致听觉皮层同时发生的过程中的支配地位更加陡峭。这种改变的方向和程度受音乐性和听觉皮层体积的调节。

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