Szymko Y M, Dimitri P S, Saunders J C
Department of Bioengineering, University of Pennsylvania, Philadelphia.
Hear Res. 1992 May;59(2):241-9. doi: 10.1016/0378-5955(92)90120-c.
The stiffness of hair bundles from isolated chick cochlear hair cells was measured in tissue culture medium. A water jet was used to deflect fiberglass fibers, quartz fibers, and hair bundles of isolated hair cells. A voltage-displacement curve was generated for a water jet ramp stimulus applied to miniature fiberglass and quartz fibers. Fiber displacements were measured using video image subtraction techniques. A force-voltage calibration curve was then derived for the fibers by modelling them as cantilever beams subjected to point forces at the tips. A voltage-displacement curve was then generated for isolated hair cell stereociliary bundles using the same procedure as for the fibers. A corresponding force-displacement curve was derived for isolated hair cells under water jet stimulation by correlating maximum ramp voltage from the hair cell's voltage-displacement curve to a corresponding force applied to a fiber from the fiberglass fiber calibration curve. The stiffness of the hair bundle, which is the slope of the hair cell's force-displacement curve, was then calculated using Hooke's law, assuming the force was distributed along the entire length of the hair bundle. The mean stiffness value was 5.04 +/- 2.68 x 10(-4) N/m for 14 hair cells, and was in close agreement with previously reported stiffness values of several investigators utilizing different animal models and procedures.
在组织培养基中测量了分离出的雏鸡耳蜗毛细胞的毛束刚度。使用水射流使分离出的毛细胞的玻璃纤维、石英纤维和毛束发生偏转。对施加于微型玻璃纤维和石英纤维的水射流斜坡刺激生成了电压-位移曲线。使用视频图像减法技术测量纤维位移。然后通过将纤维建模为在尖端受到点力作用的悬臂梁,得出纤维的力-电压校准曲线。然后使用与纤维相同的程序,为分离出的毛细胞静纤毛束生成电压-位移曲线。通过将毛细胞电压-位移曲线中的最大斜坡电压与玻璃纤维校准曲线中施加于纤维的相应力相关联,得出水射流刺激下分离出的毛细胞的相应力-位移曲线。然后,假设力沿毛束的整个长度分布,使用胡克定律计算毛束的刚度,即毛细胞力-位移曲线的斜率。14个毛细胞的平均刚度值为5.04 +/- 2.68 x 10(-4) N/m,与先前几位研究人员使用不同动物模型和程序报告的刚度值非常一致。