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A Comparison of Methods to Measure the Magnetic Moment of Magnetotactic Bacteria through Analysis of Their Trajectories in External Magnetic Fields

机译:通过分析其在外部磁场中的运动轨迹来测量趋磁细菌的磁矩的方法的比较

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摘要

Magnetotactic bacteria possess organelles called magnetosomes that confer a magnetic moment on the cells, resulting in their partial alignment with external magnetic fields. Here we show that analysis of the trajectories of cells exposed to an external magnetic field can be used to measure the average magnetic dipole moment of a cell population in at least five different ways. We apply this analysis to movies of Magnetospirillum magneticum AMB-1 cells, and compare the values of the magnetic moment obtained in this way to that obtained by direct measurements of magnetosome dimension from electron micrographs. We find that methods relying on the viscous relaxation of the cell orientation give results comparable to that obtained by magnetosome measurements, whereas methods relying on statistical mechanics assumptions give systematically lower values of the magnetic moment. Since the observed distribution of magnetic moments in the population is not sufficient to explain this discrepancy, our results suggest that non-thermal random noise is present in the system, implying that a magnetotactic bacterial population should not be considered as similar to a paramagnetic material.
机译:趋磁细菌具有称为磁小体的细胞器,该细胞器在细胞上产生磁矩,从而使其与外部磁场部分对准。在这里,我们表明,对暴露于外部磁场的细胞轨迹的分析可用于以至少五种不同方式测量细胞群体的平均磁偶极矩。我们将这种分析应用于Magnetospirillum magneticum AMB-1细胞的电影,并将以这种方式获得的磁矩值与通过从电子显微照片直接测量磁小体尺寸获得的磁矩值进行比较。我们发现依赖于细胞方向的粘性弛豫的方法所产生的结果与磁小体测量所获得的结果相当,而依赖于统计力学假设的方法所给出的系统磁矩值更低。由于观察到的磁矩在种群中的分布不足以解释这种差异,因此我们的结果表明系统中存在非热随机噪声,这意味着趋磁细菌种群不应被视为与顺磁性物质相似。

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