首页> 外文期刊>The Journal of Comparative Neurology >Cochlear inner hair cells exist transiently in the fetal Bronx Waltzer (bv/bv) mouse.
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Cochlear inner hair cells exist transiently in the fetal Bronx Waltzer (bv/bv) mouse.

机译:胎儿布朗克斯·华尔兹(bv / bv)小鼠短暂存在耳蜗内毛细胞。

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摘要

In the cochlea of the adult Bronx waltzer (bv/bv) mouse, the majority of inner hair cells are missing or deformed. As a result, Bronx waltzer mice are severely hearing impaired or deaf. Previous studies determined that most inner hair cells in these mice are missing by the time of birth, but no studies have resolved whether the missing inner hair cells ever exist in the mutant cochlea. The present study used light and electron microscopy to locate inner hair cells in the mutant mouse before birth. Most, and possibly all, inner hair cells exist in the embryonic day (E) 17 mouse. The shapes of the cells vary from normal and elongated in the youngest animals, to round and protruding through the reticular lamina a few days later. The density of sensory cells in the inner hair cell region (inner hair cells/millimeter) decreases in the basal turn between E17 and birth, and in the apical turn between birth and the third postnatal day. The initial presence of the full complement of inner hair cells, taken together with the temporospatial pattern of degeneration, suggests that the cause of inner hair cell death in the Bronx waltzer mouse is related to a differentiation event subsequent to cell birth.
机译:在成年布朗克斯华兹(bv / bv)小鼠的耳蜗中,大多数内部毛细胞缺失或变形。结果,布朗克斯华尔兹小鼠严重听力受损或失聪。先前的研究确定,这些小鼠中的大多数内毛细胞在出生时都会缺失,但尚无任何研究解决突变的耳蜗中是否存在缺失的内毛细胞。本研究使用光镜和电子显微镜在突变小鼠出生前定位其内部毛细胞。大部分(可能是全部)内部毛细胞存在于胚胎第17天(E)小鼠中。细胞的形状从正常的到最年轻的动物拉长的形状,到几天后通过网状薄片的圆形和凸出而变化。内毛细胞区域(内毛细胞/毫米)中的感觉细胞密度在E17和出生之间的基础转弯处以及出生和出生后第三天之间的心尖转弯处降低。内部毛细胞的完整补体的最初存在,以及颞pat骨变性的模式,表明布朗克斯华尔兹小鼠的内部毛细胞死亡的原因与细胞出生后的分化事件有关。

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