Department of Anatomy with Radiology, University of Auckland, Auckland, New Zealand.
J Assoc Res Otolaryngol. 2012 Oct;13(5):629-39. doi: 10.1007/s10162-012-0341-4. Epub 2012 Jul 7.
The sensory systems of the New Zealand kiwi appear to be uniquely adapted to occupy a nocturnal ground-dwelling niche. In addition to well-developed tactile and olfactory systems, the auditory system shows specializations of the ear, which are maintained along the central nervous system. Here, we provide a detailed description of the auditory nerve, hair cells, and stereovillar bundle orientation of the hair cells in the North Island brown kiwi. The auditory nerve of the kiwi contained about 8,000 fibers. Using the number of hair cells and innervating nerve fibers to calculate a ratio of average innervation density showed that the afferent innervation ratio in kiwi was denser than in most other birds examined. The average diameters of cochlear afferent axons in kiwi showed the typical gradient across the tonotopic axis. The kiwi basilar papilla showed a clear differentiation of tall and short hair cells. The proportion of short hair cells was higher than in the emu and likely reflects a bias towards higher frequencies represented on the kiwi basilar papilla. The orientation of the stereovillar bundles in the kiwi basilar papilla showed a pattern similar to that in most other birds but was most similar to that of the emu. Overall, many features of the auditory nerve, hair cells, and stereovilli bundle orientation in the kiwi are typical of most birds examined. Some features of the kiwi auditory system do, however, support a high-frequency specialization, specifically the innervation density and generally small size of hair-cell somata, whereas others showed the presumed ancestral condition similar to that found in the emu.
新西兰几维鸟的感觉系统似乎是专门适应夜间地面生活的。除了发达的触觉和嗅觉系统外,听觉系统的耳朵也有特殊之处,这些特殊之处沿中枢神经系统保持着。在这里,我们提供了新西兰北岛褐几维鸟的听觉神经、毛细胞和毛细胞的立体纤毛束取向的详细描述。几维鸟的听觉神经含有大约 8000 根纤维。用毛细胞的数量和支配神经纤维的数量计算平均支配密度的比值表明,几维鸟的传入支配密度比大多数检查过的鸟类都要高。几维鸟耳蜗传入轴突的平均直径在音位轴上表现出典型的梯度。几维鸟的基底乳头显示出长短毛细胞的明显分化。短毛细胞的比例高于鸸鹋,可能反映了在几维鸟基底乳突上代表高频的偏向。几维鸟基底乳突的立体纤毛束的取向与大多数其他鸟类相似,但与鸸鹋最相似。总的来说,几维鸟听觉神经、毛细胞和立体纤毛束取向的许多特征与大多数检查过的鸟类相似。然而,几维鸟听觉系统的某些特征确实支持高频专业化,特别是支配密度和毛细胞体的一般较小尺寸,而其他特征则显示出与鸸鹋相似的假定祖先状态。