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首页> 外文期刊>Russian Journal of Developmental Biology >Morphology of the inner ear of mammals in ontogeny
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Morphology of the inner ear of mammals in ontogeny

机译:个体发育过程中哺乳动物内耳的形态

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摘要

In both phylogenesis and ontogenesis, the inner ear is formed first as a core, which, phylogenetically, is the most ancient part of the peripheral region of the auditory system. Along with the development of the inner ear, other links of different evolutionary ages (the auricle is a phylogenetically young link) begin to form in the peripheral auditory system.Unlike the auricle and middle ear, which are characterized by very diverse structural variations and a wide range of adaptive transformations related to the peculiarities of the species ecology, the inner ear of specimens of various ecological groups retains constant structural organization with a wide diversity of functions. In the typical topography of both the cochlear and vestibular analyzers, the form and dimensions of individual components usually vary.The anatomical formation of inner-ear structures is mostly complete in the early prefetal period, whereas the differentiation of cells of the sensory epithelium in the cochlea, macule, and cristae of altricial species continues up to the earliest stages of postnatal ontogenesis. The differentiation of the inner-ear structures in precocial species (cetaceans, ungulate animals) is normally complete by the moment of birth.
机译:在系统发育和本体发育中,首先将内耳作为核心形成,从系统发育上讲,它是听觉系统外围区域最古老的部分。随着内耳的发展,周围听觉系统中开始形成不同进化年龄的其他联系(耳廓是系统发育上的年轻联系),与耳廓和中耳不同,耳廓和中耳的特征是结构变化非常多样,并且耳廓也不同。与物种生态特性有关的适应性变化范围广泛,各种生态群体的标本的内耳保持恒定的结构组织,具有多种功能。在耳蜗分析仪和前庭分析仪的典型地形中,单个组件的形式和尺寸通常会有所不同。内耳结构的解剖结构在胎儿前期的早期大部分完成,而感觉上皮细胞的分化则在胎儿前期完成。耳蜗,黄斑和cr类动物一直持续到产后本体发育的最早阶段。早熟物种(鲸类,有蹄类动物)内耳结构的分化通常在出生时就已完成。

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