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首页> 外文期刊>Journal of Theoretical Biology >A model for encoding of magnetic field intensity by magnetite-based magnetoreceptor cells
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A model for encoding of magnetic field intensity by magnetite-based magnetoreceptor cells

机译:磁铁矿基磁感受器细胞编码磁场强度的模型

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摘要

A conceptual model is proposed for the encoding of magnetic field intensity from the motion of a chain of single-domain magnetite crystals which is located within a receptor cell, connected at one end to the cell membrane, and linked by cytoskeletal filaments to an array of mechanically gated ion channels centred on the end of the chain. In this arrangement, the physical links between the chain and ion channels will restrict the motion of the magnetite chain in response to the external magnetic field to a narrow cone with its axis through the point where the chain is attached to the membrane. The motion of the chain in the presence of an external magnetic field and thermal agitation will open a varying number of channels, causing the membrane potential to oscillate about some mean value that depends on the component of magnetic intensity oriented perpendicular to the cell membrane. The model permits estimation of magnetic intensity by integration of the motion of the magnetite chain over an area of the cell membrane, explains a number of results from physiological recordings in birds and fish, and makes testable predictions for future experimental studies. The model also provides a mechanism at the cellular level for a constant value of the Weber fraction (the ratio of the threshold sensitivity to a stimulus and the magnitude of that stimulus) for the magnetic sense but requires a separate gain control mechanism for modulation of sensitivity over a range of background fields. If magnetic field detection and encoding works as proposed in the model, the magnetoreceptor system may also be able to reconstruct the magnetic field vector using information about the vertical and horizontal axes from the eyes, gravity detectors, or both. (C) 2007 Elsevier Ltd. All rights reserved.
机译:提出了一种概念模型,用于从位于受体细胞内,一端连接到细胞膜并通过细胞骨架细丝连接到一系列细胞的单畴磁铁矿晶体链的运动来编码磁场强度。机械选通的离子通道位于链的末端。在这种布置中,链和离子通道之间的物理链接将限制磁铁矿链的响应外部磁场,使其运动通过轴连接链与膜的点的狭窄锥体。在存在外部磁场和热搅动的情况下,链条的运动将打开数量不等的通道,从而导致膜电位围绕某个平均值振荡,该平均值取决于垂直于细胞膜的磁强度分量。该模型允许通过整合磁铁矿链在细胞膜区域上的运动来估计磁强度,解释鸟类和鱼类的生理记录产生的许多结果,并为未来的实验研究做出可验证的预测。该模型还提供了在细胞水平上用于磁感应的Weber分数恒定值(阈值灵敏度与刺激的比率以及该刺激的大小)的机制,但是需要单独的增益控制机制来调节灵敏度在一系列背景字段中。如果磁场检测和编码按模型中的建议工作,则磁感受器系统也可以使用来自眼睛,重力检测器或两者的有关垂直轴和水平轴的信息来重建磁场矢量。 (C)2007 Elsevier Ltd.保留所有权利。

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