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猫下丘神经元对声电联合刺激的反应

Neuronal responses in cat inferior colliculus to combined acoustic and electric stimulation.

作者信息

Vollmer Maike, Hartmann Rainer, Tillein Jochen

出版信息

Adv Otorhinolaryngol. 2010;67:61-69. doi: 10.1159/000262597. Epub 2009 Nov 25.

Abstract

The present study explored the interactions of combined electric and acoustic stimulation (EAS) on neural responses in the central auditory system. Normal-hearing cats were implanted unilaterally with scala tympani electrodes. Two experimental approaches were used. First, in a forward-masking paradigm, single biphasic electric pulses were used as maskers, unmodulated acoustic tone bursts at the neuron's characteristic frequency (CF) were used as probes. Then, in a simultaneous-masking paradigm, the masking effects of acoustic tones (CF) on responses to single electric pulses (probes) were examined. In the second approach, we studied the effects of phase relationship between acoustic and electric stimulation. Sinusoidal amplitude-modulated (30 Hz) CF tones and electric sinusoids (30 Hz) were shifted in relative phase (0-270 degrees). For all experimental conditions, the levels of the two stimuli were changed systematically. Responses were recorded in the contralateral central nucleus of the inferior colliculus. Single neuron analyses of spike rate and thresholds demonstrated that combined EAS resulted in complex interactions that were strongly dependent on the relative level of the given stimulus modes. The amount of masking increased with masker level and decreased with probe level. At higher current levels, the masking effect of electric responses dominated the effect of acoustic responses. The degree of these general masking effects was highly influenced by the relative phase between the combined stimuli. It seems likely that such interactions of combined stimulation have perceptual consequences in human cochlear implant subjects with residual hearing.

摘要

本研究探讨了电刺激与声刺激联合作用(EAS)对中枢听觉系统神经反应的相互作用。对听力正常的猫单侧植入鼓阶电极。采用了两种实验方法。首先,在超前掩蔽范式中,使用单个双相电脉冲作为掩蔽刺激,以神经元特征频率(CF)处未调制的纯音短声作为探测刺激。然后,在同时掩蔽范式中,研究了纯音(CF)对单个电脉冲(探测刺激)反应的掩蔽效应。在第二种方法中,我们研究了声刺激与电刺激之间相位关系的影响。将正弦调幅(30Hz)的CF纯音和电正弦波(30Hz)的相对相位进行了0至270度的变化。对于所有实验条件,系统地改变了两种刺激的强度。在对侧下丘中央核记录反应。对放电率和阈值的单神经元分析表明,联合EAS会导致复杂的相互作用,这种相互作用强烈依赖于给定刺激模式的相对强度。掩蔽量随掩蔽刺激强度增加而增加,随探测刺激强度降低而降低。在较高电流水平下,电反应的掩蔽效应主导了声反应的效应。这些一般掩蔽效应的程度受联合刺激之间相对相位的高度影响。联合刺激的这种相互作用似乎可能对有残余听力的人工耳蜗植入患者产生感知后果。

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