首页> 外文OA文献 >RHYTHMICITY IN THE PROTOPLASMIC STREAMING OF A SLIME MOLD, PHYSARUM POLYCEPHALUM : I. A STATISTICAL ANALYSIS OF THE ELECTRIC POTENTIAL RHYTHM
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RHYTHMICITY IN THE PROTOPLASMIC STREAMING OF A SLIME MOLD, PHYSARUM POLYCEPHALUM : I. A STATISTICAL ANALYSIS OF THE ELECTRIC POTENTIAL RHYTHM

机译:纤细型果肉多囊藻的原生质层流节律:I.电势节律的统计分析

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摘要

The electric potential difference (1 to 15 mv.) between two loci of the slime mold connected with a strand of protoplasm changes rhythmically with the same period (60 to 180 seconds) as that of the back and forth protoplasmic streaming along the strand. Generally some phase difference is observed between them. Periods of the electric potential rhythm show a Gaussian distribution. Amplitudes give a somewhat different distribution curve. Wave forms are not always simple harmonic ones, but are distorted more or less. However, auto-correlation analysis proves that there is a dominant rhythm of a nearly constant period which coincides with the mean period of the Gaussian distribution curve. Calculations made on an assumption that the electric potential rhythm is the result of many elementary rhythms (i.e., same periodicity, arbitrary phase angles) distributed throughout the plasmodium, give a satisfactory coincidence with the observed distribution for the amplitude. The predominance of a rhythm of a nearly constant periodicity suggests the existence of well organized interactions among components of a contractile protein network, the rhythmic deformation of which is supposed to be responsible for the protoplasmic streaming and for the electric potential rhythm.
机译:与原质链相连的粘液霉菌的两个基因座之间的电位差(1至15 mv。)与沿原质链来回流动的原质流具有相同的周期(60至180秒)。通常在它们之间观察到一些相位差。电位节律的周期显示出高斯分布。振幅会给出一些不同的分布曲线。波形并不总是简单的谐波波形,但或多或​​少会失真。然而,自相关分析证明存在一个几乎恒定周期的主导节律,该节律与高斯分布曲线的平均周期一致。假设电势节律是分布在整个疟原虫中的许多基本节律(即,相同的周期性,任意相角)的结果而进行的计算,与观察到的振幅分布具有令人满意的一致性。几乎恒定周期的节律占优势,这表明在收缩蛋白网络的各个组成部分之间存在组织良好的相互作用,其节律变形被认为是原生质流和电位节律的原因。

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  • 作者

    Kishimoto, Uichiro;

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  • 年度 1958
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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