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牛蛙椭圆囊毛细胞的比较转导机制。II. 对毛束位移的敏感性和反应动力学。

Comparative transduction mechanisms of hair cells in the bullfrog utriculus. II. Sensitivity and response dynamics to hair bundle displacement.

作者信息

Baird R A

机构信息

Department of Neuro-otology, Good Samaritan Hospital and Medical Center, Portland, Oregon 97209.

出版信息

J Neurophysiol. 1994 Feb;71(2):685-705. doi: 10.1152/jn.1994.71.2.685.

Abstract
  1. Hair cells in whole-mount in vitro preparations of the utricular macula of the bullfrog (Rana catesbeiana) were selected according to their macular location and hair bundle morphology. The sensitivity and response dynamics of selected hair cells to natural stimulation were examined by recording their voltage responses to step and sinusoidal hair bundle displacements applied to their longest stereocilia. 2. The voltage responses of 31 hair cells to sinusoidal hair bundle displacements were characterized by their gains and phases, taken with respect to peak hair bundle displacement. The gains of Type B and Type C cells at both 0.5 and 5.0 Hz were markedly lower than those of Type F and Type E cells. Phases, with the exception of Type C cells, lagged hair bundle displacement at 0.5 Hz. Type C cells had phase leads of 25-40 degrees. At 5.0 Hz, response phases in all cells were phase lagged with respect to those at 0.5 Hz. Type C cells had larger gains and smaller phase leads at 5.0 Hz than at 0.5 Hz, suggesting the presence of low-frequency adaptation. 3. Displacement-response curves, derived from the voltage responses to 5.0-Hz sinusoids, were sigmoidal in shape and asymmetrical, with the depolarizing response having a greater magnitude and saturating less abruptly than the hyperpolarizing response. When normalized to their largest displacement the linear ranges of these curves varied from < 0.5 to 1.25 microns and were largest in Type B and smallest in Type F and Type E cells. Sensitivity, defined as the slope of the normalized displacement-response curve, was inversely correlated with linear range. 4. The contribution of geometric factors associated with the hair bundle to linear range and sensitivity were predicted from realistic models of utricular hair bundles created using morphological data obtained from light and electron microscopy. Three factors, including 1) the inverse ratio of the lengths of the kinocilium and longest stereocilia, representing the lever arm between kinociliary and stereociliary displacement; 2) tip link extension/linear displacement, largely a function of stereociliary height and separation; and 3) stereociliary number, an estimate of the number of transduction channels, were considered in this analysis. The first of these factors was quantitatively more important than the latter two factors and their total contribution was largest in Type B and Type C cells. Theoretical models were also used to calculate the relation between rotary and linear displacement.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 根据牛蛙(牛蛙)椭圆囊斑的全细胞膜片钳制备中的毛细胞的黄斑位置和毛束形态进行选择。通过记录选定毛细胞对施加于其最长静纤毛的阶跃和正弦毛束位移的电压响应,来检测其对自然刺激的敏感性和反应动力学。2. 31个毛细胞对正弦毛束位移的电压响应通过其增益和相位来表征,相对于毛束位移峰值而言。B型和C型细胞在0.5 Hz和5.0 Hz时的增益明显低于F型和E型细胞。除C型细胞外,在0.5 Hz时,相位滞后于毛束位移。C型细胞的相位超前25 - 40度。在5.0 Hz时,所有细胞的响应相位相对于0.5 Hz时均为相位滞后。C型细胞在5.0 Hz时比在0.5 Hz时具有更大的增益和更小的相位超前,表明存在低频适应性。3. 从对5.0 Hz正弦波的电压响应得出的位移 - 响应曲线呈S形且不对称,去极化响应的幅度更大,且比超极化响应饱和得更缓慢。当归一化到其最大位移时,这些曲线的线性范围从<0.5到1.25微米不等,在B型细胞中最大,在F型和E型细胞中最小。灵敏度定义为归一化位移 - 响应曲线的斜率,与线性范围呈负相关。4. 根据使用从光学和电子显微镜获得的形态学数据创建的椭圆囊毛束的真实模型,预测了与毛束相关的几何因素对线性范围和灵敏度的贡献。在该分析中考虑了三个因素,包括:1)动纤毛与最长静纤毛长度的反比,代表动纤毛和静纤毛位移之间的杠杆臂;2)顶连接延伸/线性位移,主要是静纤毛高度和间距的函数;3)静纤毛数量,转导通道数量的估计值。这些因素中的第一个在数量上比后两个因素更重要,并且它们的总贡献在B型和C型细胞中最大。理论模型还用于计算旋转位移和线性位移之间的关系。(摘要截断于400字)

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