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What the Toadfish Ear Tells the Toadfish Brain About Sound

机译:蟾鱼耳朵告诉蟾鱼大脑的声音

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Of the three, paired otolithic endorgans in the ear of teleost fishes, the saccule is the one most often demonstrated to have a major role in encoding frequencies of biologically relevant sounds. The toadfish saccule also encodes sound level and sound source direction in the phase-locked activity conveyed via auditory afferents to nuclei of the ipsilateral octaval column in the medulla. Although paired auditory receptors are present in teleost fishes, binaural processes were believed to be unimportant due to the speed of sound in water and the acoustic transparency of the tissues in water. In contrast, there are behavioral and anatomical data that support binaural processing in fishes. Studies in the toadfish combined anatomical tract-tracing and physiological recordings from identified sites along the ascending auditory pathway to document response characteristics at each level. Binaural computations in the medulla and midbrain sharpen the directional information provided by the saccule. Furthermore, physiological studies in the central nervous system indicated that encoding frequency, sound level, temporal pattern, and sound source direction are important components of what the toadfish ear tells the toadfish brain about sound.
机译:在Trexoist鱼的耳朵中的三个,囊耳中,骶骨是最常见的在编码生物学相关声音的频率方面具有重要作用。 Toadfish Saccule还通过听觉引入通过髓质中的同侧八度柱的核来传达的锁相活动中的声学水平和声源方向。虽然配对的听觉受体存在于Textost鱼中,但由于水中的声速和水中组织的声学透明度,双耳过程被认为是不重要的。相比之下,存在有用于鱼类的双耳加工的行为和解剖数据。蟾蜍组合从升读听觉途径的鉴定网站组合解剖学散布和生理记录,以在每个级别的记录响应特征。 Medulla和Midbrain的双耳计算锐化了Saccule提供的方向信息。此外,中枢神经系统的生理研究表明,编码频率,声级,时间模式和声源方向是蟾鱼耳朵告诉蟾鱼大脑的重要组成部分。

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