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耳聋豚鼠对耳蜗内电刺激的行为反应:一种新的快速心理物理学方法。

Behavioral responses of deafened guinea pigs to intracochlear electrical stimulation: a new rapid psychophysical procedure.

作者信息

Agterberg Martijn J H, Versnel Huib

机构信息

Department of Otorhinolaryngology and Head & Neck Surgery, Brain Center Rudolf Magnus, University Medical Center Utrecht, P.O. Box 85500, 3508 GA Utrecht, The Netherlands; Department of Biophysics, Donders Institute for Brain, Cognition and Behaviour, Radboud University Nijmegen, P.O. Box 9010, 6500 GL Nijmegen, The Netherlands.

Department of Otorhinolaryngology and Head & Neck Surgery, Brain Center Rudolf Magnus, University Medical Center Utrecht, P.O. Box 85500, 3508 GA Utrecht, The Netherlands.

出版信息

Hear Res. 2014 Jul;313:67-74. doi: 10.1016/j.heares.2014.04.011. Epub 2014 May 5.

Abstract

In auditory research the guinea pig is often preferred above rats and mice because of the easily accessible cochlea and because the frequency range of its hearing is more comparable to that of humans. Studies of the guinea-pig auditory system primarily apply histological and electrophysiological measures. Behavioral animal paradigms, in particular in combination with these histological and electrophysiological methods, are necessary in the development of new therapeutic interventions. However, the guinea pig is not considered an attractive animal for behavioral experiments. Therefore, the purpose of this study was to develop a behavioral task suitable for guinea pigs, that can be utilized in cochlear-implant related research. Guinea pigs were trained in a modified shuttle-box in which a stream of air was used as unconditioned stimulus (UCS). A stream of air was preferred over conventionally used methods as electric foot-shocks since it produces less stress, which is a confounding factor in behavioral experiments. Hearing guinea pigs were trained to respond to acoustic stimuli. They responded correctly within only five sessions of ten minutes. The animals maintained their performance four weeks after the right cochlea was implanted with an electrode array. After systemic deafening, the animals responded in the first session immediately to intracochlear electrical stimulation. These responses were not affected by daily chronic electrical stimulation (CES). In conclusion, the present study demonstrates that guinea pigs can be trained relatively fast to respond to acoustic stimuli, and that the training has a lasting effect, which generalizes to intracochlear electrical stimulation after deafening. Furthermore, it demonstrates that bilaterally deafened guinea pigs with substantial (∼50%) loss of spiral ganglion cells (SGCs), detect intracochlear electrical stimulation.

摘要

在听觉研究中,豚鼠通常比大鼠和小鼠更受青睐,这是因为其耳蜗易于接触,且其听力频率范围与人类的更具可比性。对豚鼠听觉系统的研究主要采用组织学和电生理学方法。行为动物范式,特别是与这些组织学和电生理学方法相结合时,对于新治疗干预措施的开发是必要的。然而,豚鼠并不被认为是行为实验的理想动物。因此,本研究的目的是开发一种适用于豚鼠的行为任务,可用于与人工耳蜗相关的研究。豚鼠在一个经过改良的穿梭箱中接受训练,其中一股气流被用作非条件刺激(UCS)。与传统使用的电足击方法相比,气流更受青睐,因为它产生的压力较小,而压力是行为实验中的一个混杂因素。听力正常的豚鼠被训练对声音刺激做出反应。它们在仅五次十分钟的训练课程内就能正确做出反应。在右侧耳蜗植入电极阵列四周后,这些动物仍保持其表现。在全身致聋后,动物在第一节课中立即对耳蜗内电刺激做出反应。这些反应不受每日慢性电刺激(CES)的影响。总之,本研究表明,豚鼠能够相对快速地被训练对声音刺激做出反应,并且这种训练具有持久的效果,这种效果在致聋后可推广到耳蜗内电刺激。此外,它还表明,双侧致聋且螺旋神经节细胞(SGCs)大量(约50%)损失的豚鼠能够检测到耳蜗内电刺激。

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