首页> 外文会议>Engineering in Medicine and Biology Society, 2004. IEMBS '04. 26th Annual International Conference of the IEEE >Linear system analysis of ion channel modulation in rod photoreceptors under dim light conditions
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Linear system analysis of ion channel modulation in rod photoreceptors under dim light conditions

机译:杆状感光器在弱光条件下离子通道调制的线性系统分析

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Rod photoreceptors perform the task of night vision. The dynamics of dim light response is mainly determined by non-inactivating potassium Kx channels in the inner segment, manifested by such a feature as high-pass filtering. The L-type Ca2+ channels function as the voltage dependent actuator governing synaptic transmission from rods to the second order cells. Modulation of these ion channels can affect physiological features of rods. We introduced here an analytical approach to construct a linear circuit model of the rod membrane to study the effects of modulation of ion channels on rod function. The effects of tetraethylammonium (TEA) and Zn2+ were analyzed in frequency domain. The obtained results were consistent with the computational and experimental studies, which showed that TEA attenuated the high-pass filtering whereas Zn2+ enhanced it. The role of Ca2+ channels in the dynamics of light response was also investigated to show that the activation gate exhibited a larger impact on the overall frequency response than the inactivation gate. Linearization of ion channels for small perturbations provides an attractive alternative method to quantitatively evaluate the physiological significance of the effects of the modulation of ion channels. The resultant linear system may help reveal important features of neurons which can hardly be obtained otherwise.
机译:杆状感光体执行夜视任务。暗光响应的动力学主要取决于内部段中非灭活的钾Kx通道,表现为高通滤波等特征。 L型Ca 2 + 通道用作依赖电压的致动器,控制从杆到二阶细胞的突触传递。这些离子通道的调节可影响棒的生理特征。我们在这里介绍了一种分析方法来构建棒膜的线性电路模型,以研究离子通道调制对棒功能的影响。在频域分析了四乙铵(TEA)和Zn 2 + 的作用。所得结果与计算和实验研究相吻合,表明TEA减弱了高通滤波,而Zn 2 + 增强了它。还研究了Ca 2 + 通道在光响应动力学中的作用,结果表明,与失活栅极相比,激活栅极对整体频率响应的影响更大。小扰动的离子通道线性化提供了一种有吸引力的替代方法,可以定量评估离子通道调制效应的生理学意义。最终的线性系统可能有助于揭示神经元的重要特征,而这些特征否则很难获得。

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