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Micropipette aspiration on the outer hair cell lateral wall.

机译:微量移液器抽吸在外部毛细胞侧壁上。

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摘要

The mechanical properties of the lateral wall of the guinea pig cochlear outer hair cell were studied using the micropipette aspiration technique. A fire-polished micropipette with an inner diameter of approximately 4 microm was brought into contact with the lateral wall and negative pressure was applied. The resulting deformation of the lateral wall was recorded on videotape and subjected to morphometric analysis. The relation between the length of the aspirated portion of the cell and aspiration pressure is characterized by the stiffness parameter, K(s) = 1.07 +/- 0.24 (SD) dyn/cm (n = 14). Values of K(s) do not correlate with the original cell length, which ranges from 29 to 74 microm. Theoretical analysis based on elastic shell theory applied to the experimental data yields an estimate of the effective elastic shear modulus, mu = 15.4 +/- 3.3 dyn/cm. These data were obtained at subcritical aspiration pressures, typically less than 10 cm H2O. After reaching a critical (vesiculation) pressure, the cytoplasmic membrane appeared to separate from the underlying structures, a vesicle with a length of 10-20 microm was formed, and the cytoplasmic membrane resealed. This vesiculation process was repeated until a cell-specific limit was reached and no more vesicles were formed. Over 20 vesicles were formed from the longest cells in the experiment.
机译:使用微量移液管吸取技术研究了豚鼠耳蜗外毛细胞侧壁的力学性能。使具有约4微米内径的火抛光微量移液器与侧壁接触,并施加负压。产生的侧壁变形记录在录像带上,并进行形态分析。细胞抽吸部分的长度和抽吸压力之间的关系由刚度参数K(s)= 1.07 +/- 0.24(SD)dyn / cm(n = 14)表征。 K的值与原始细胞长度不相关,原始细胞长度为29至74微米。基于弹性壳理论的理论分析应用于实验数据,得出有效弹性剪切模量的估计值,mu = 15.4 +/- 3.3 dyn / cm。这些数据是在亚临界抽吸压力(通常小于10 cm H2O)下获得的。达到临界(囊泡)压力后,细胞质膜似乎与下面的结构分离,形成了长度为10-20微米的囊泡,并重新密封了细胞质膜。重复该囊泡过程,直到达到细胞特异性极限并且不再形成囊泡为止。实验中最长的细胞形成了20多个囊泡。

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