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单个额外的滴答声对有规律滴答声序列的听觉反应的干扰。

Disruption of the auditory response to a regular click train by a single, extra click.

作者信息

Lütkenhöner Bernd, Patterson Roy D

机构信息

ENT Clinic, Münster University Hospital, Kardinal-von-Galen-Ring 10, 48129, Münster, Germany,

出版信息

Exp Brain Res. 2015 Jun;233(6):1875-92. doi: 10.1007/s00221-015-4260-6. Epub 2015 Mar 27.

Abstract

It has been hypothesized that the steady-state response to a periodic sequence of clicks can be modeled as the superposition of responses to single clicks. Here, this hypothesis is challenged by presenting an extra click halfway between two consecutive clicks of a regular series, while measuring the auditory evoked field. After a solitary click at time zero, the click series sounded from 100 to 900 ms, with the extra click presented around 500 ms. The silent period between two stimulus sequences was 310-390 ms (uniformly distributed) so that one stimulation cycle lasted, on average, 1250 ms. Five different click rates between 20 and 60 Hz were examined. The disturbance caused by the extra click was revealed by subtracting the estimated steady-state response from the joint response to the click series and the extra click. The early peaks of the single-click response effectively coincide with same-polarity peaks of the 20-Hz steady-state response. Nevertheless, prediction of the latter from the former proved impossible. However, the 40-Hz steady-state response can be predicted reasonably well from the 20-Hz steady-state response. Somewhat surprisingly, the amplitude of the evoked response to the extra click grew when the click rate of the train was increased from 20 to 30 Hz; the opposite effect would have been expected from research on adaptation. The smaller amplitude at lower click rates might be explained by forward suppression. In this case, the apparent escape from suppression at higher rates might indicate that the clicks belonging to the periodic train are being integrated into an auditory stream, possibly in much the same manner as in classical stream segregation experiments.

摘要

有人提出假设,对周期性点击序列的稳态反应可以建模为对单个点击反应的叠加。在此,通过在常规序列的两个连续点击之间的中途添加一个额外点击,并测量听觉诱发电场,对这一假设提出了挑战。在时间零点发出一个单独点击后,点击序列在100至900毫秒内响起,额外点击在约500毫秒时呈现。两个刺激序列之间的静息期为310 - 390毫秒(均匀分布),因此一个刺激周期平均持续1250毫秒。研究了20至60赫兹之间的五种不同点击速率。通过从对点击序列和额外点击的联合反应中减去估计的稳态反应,揭示了额外点击引起的干扰。单次点击反应的早期峰值与20赫兹稳态反应的同极性峰值有效重合。然而,事实证明无法从前者预测后者。不过,40赫兹的稳态反应可以从20赫兹的稳态反应中得到较好的预测。有点令人惊讶的是,当点击序列的速率从20赫兹增加到30赫兹时,对额外点击的诱发反应幅度增大;从适应性研究中本应预期相反的效果。较低点击速率下较小的幅度可能由前向抑制来解释。在这种情况下,较高速率下明显从抑制中逃脱可能表明属于周期性序列的点击正在被整合到一个听觉流中,可能与经典的流分离实验中的方式大致相同。

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