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Enhancing Inhibition-Induced Plasticity in Tinnitus – Spectral Energy Contrasts in Tailor-Made Notched Music Matter

机译:增强耳鸣中抑制诱导的可塑性–量身定制的缺口音乐问题中的光谱能量对比

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摘要

Chronic tinnitus seems to be caused by reduced inhibition among frequency selective neurons in the auditory cortex. One possibility to reduce tinnitus perception is to induce inhibition onto over-activated neurons representing the tinnitus frequency via tailor-made notched music (TMNM). Since lateral inhibition is modifiable by spectral energy contrasts, the question arises if the effects of inhibition-induced plasticity can be enhanced by introducing increased spectral energy contrasts (ISEC) in TMNM. Eighteen participants suffering from chronic tonal tinnitus, pseudo randomly assigned to either a classical TMNM or an ISEC-TMNM group, listened to notched music for three hours on three consecutive days. The music was filtered for both groups by introducing a notch filter centered at the individual tinnitus frequency. For the ISEC-TMNM group a frequency bandwidth of 3/8 octaves on each side of the notch was amplified, additionally, by about 20 dB. Before and after each music exposure, participants rated their subjectively perceived tinnitus loudness on a visual analog scale. During the magnetoencephalographic recordings, participants were stimulated with either a reference tone of 500 Hz or a test tone with a carrier frequency representing the individual tinnitus pitch. Perceived tinnitus loudness was significantly reduced after TMNM exposure, though TMNM type did not influence the loudness ratings. Tinnitus related neural activity in the N1m time window and in the so called tinnitus network comprising temporal, parietal and frontal regions was reduced after TMNM exposure. The ISEC-TMNM group revealed even enhanced inhibition-induced plasticity in a temporal and a frontal cortical area. Overall, inhibition of tinnitus related neural activity could be strengthened in people affected with tinnitus by increasing spectral energy contrast in TMNM, confirming the concepts of inhibition-induced plasticity via TMNM and spectral energy contrasts.
机译:慢性耳鸣似乎是由听觉皮层的频率选择性神经元之间抑制作用降低引起的。减少耳鸣感知的一种可能性是通过量身定制的陷波音乐(TMNM)来抑制代表耳鸣频率的过度激活的神经元。由于横向抑制可以通过光谱能量对比来改变,因此产生一个问题,是否可以通过在TMNM中引入增加的光谱能量对比(ISEC)来增强抑制诱导可塑性的效果。患有慢性音调性耳鸣的18名参与者(随机分配给经典TMNM或ISEC-TMNM组)被连续三天听了三个小时的音乐。通过引入以单个耳鸣频率为中心的陷波滤波器,对两组音乐进行了滤波。对于ISEC-TMNM组,缺口两侧的3/8个八度音阶的频率带宽被额外放大了20 dB。在每次音乐播放之前和之后,参与者都以视觉模拟量表对主观感知的耳鸣响度进行评分。在脑磁图记录过程中,以500 Hz的参考音或载有代表各个耳鸣音调的载波频率的测试音激励参与者。尽管TMNM类型不影响响度等级,但感觉到的耳鸣响度在TMNM暴露后显着降低。在TMNM暴露后,N1m时间窗和包括颞,顶和额叶区域的所谓耳鸣网络中与耳鸣有关的神经活动减少。 ISEC-TMNM组在颞叶和额叶皮层区域甚至显示出增强的抑制诱导可塑性。总体而言,可通过增加TMNM中的光谱能量对比来增强对耳鸣患者的耳鸣相关神经活动的抑制作用,从而证实了通过TMNM和光谱能量对比抑制诱导可塑性的概念。

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