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未固定耳蜗的形态学

Morphology of the unfixed cochlea.

作者信息

Edge R M, Evans B N, Pearce M, Richter C P, Hu X, Dallos P

机构信息

Department of Neurobiology, Northwestern University, Evanston, IL 60208, USA.

出版信息

Hear Res. 1998 Oct;124(1-2):1-16. doi: 10.1016/s0378-5955(98)00090-2.

Abstract

Our knowledge of cochlear geometry is based largely upon anatomical observations derived from fixed, dehydrated, embedded and/or sputter-coated material. We have now developed a novel preparation, the hemicochlea, where for the first time living cochlear structures can be observed in situ and from a radial perspective. The experiments were performed on the Mongolian gerbil. Ion substitution experiments suggest that no significant swelling or shrinkage occurs when the preparation is bathed in normal culture medium, so long as calcium concentration is kept at endolymph-like (20 microM) levels. The tectorial membrane-reticular lamina relationship appears to remain well preserved. Hensen's stripe maintains a close relationship with the inner hair cell stereociliary bundle, unless the mechanical coupling becomes disturbed. In addition, standard fixation and/or dehydration procedures are used to quantify changes due to shrinkage artifacts. Various morphometric gradients are examined in unfixed specimens from apical, middle, and basal turns.

摘要

我们对耳蜗几何结构的认识很大程度上基于从固定、脱水、包埋和/或溅射镀膜材料中获得的解剖学观察结果。我们现已开发出一种新型标本——半规管,首次能够在原位并从径向角度观察活体耳蜗结构。实验在蒙古沙鼠身上进行。离子替代实验表明,只要将标本置于正常培养基中,且钙浓度保持在内淋巴样(20微摩尔)水平,就不会发生明显的肿胀或收缩。盖膜与网状层的关系似乎仍保存完好。亨森带与内毛细胞静纤毛束保持密切关系,除非机械耦合受到干扰。此外,使用标准固定和/或脱水程序来量化因收缩伪像导致的变化。在来自顶转、中转和底转的未固定标本中检查各种形态计量梯度。

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