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Evidence for a Highly Elastic Shell-Core Organization of Cochlear Outer Hair Cells by Local Membrane Indentation

机译:通过局部膜压痕的人工耳蜗外毛细胞的高弹性壳核组织的证据。

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摘要

Cochlear outer hair cells (OHCs) are thought to play an essential role in the high sensitivity and sharp frequency selectivity of the hearing organ by generating forces that amplify the vibrations of this organ at frequencies up to several tens of kHz. This tuning process depends on the mechanical properties of the cochlear partition, which OHC activity has been proposed to modulate on a cycle-by-cycle basis. OHCs have a specialized shell-core ultrastructure believed to be important for the mechanics of these cells and for their unique electromotility properties. Here we use atomic force microscopy to investigate the mechanical properties of isolated living OHCs and to show that indentation mechanics of their membrane is consistent with a shell-core organization. Indentations of OHCs are also found to be highly nonhysteretic at deformation rates of more than 40 μm/s, which suggests the OHC lateral wall is a highly elastic structure, with little viscous dissipation, as would appear to be required in view of the very rapid changes in shape and mechanics OHCs are believed to undergo in vivo.
机译:人们认为,耳蜗外毛细胞(OHC)通过产生可放大该器官在高达几十kHz的频率上的振动的力,在听力器官的高灵敏度和尖锐的频率选择性中起重要作用。这种调节过程取决于耳蜗隔板的机械性能,有人建议将其OHC活性逐周期调节。 OHC具有专门的壳核超微结构,据信对于这些细胞的力学及其独特的电动力性质很重要。在这里,我们使用原子力显微镜研究分离的活性OHC的机械性能,并证明其膜的压痕力学与壳核组织一致。在变形率大于40μm/ s的情况下,还发现OHC的压痕高度滞后,这表明OHC侧壁是一种高弹性的结构,几乎没有粘性耗散,鉴于非常快的情况,这是必需的形状和力学的变化OHC被认为在体内发生。

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