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Single Wavelength Shadow Imaging of Caenorhabditis elegans Locomotion Including Force Estimates

机译:秀丽隐杆线虫运动的单波长阴影成像包括力估计。

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摘要

This study demonstrates an inexpensive and straightforward technique that allows the measurement of physical properties such as position, velocity, acceleration and forces involved in the locomotory behavior of nematodes suspended in a column of water in response to single wavelengths of light. We demonstrate how to evaluate the locomotion of a microscopic organism using Single Wavelength Shadow Imaging (SWSI) using two different examples.The first example is a systematic and statistically viable study of the average descent of C. elegans in a column of water. For this study, we used living and dead wildtype C. elegans. When we compared the velocity and direction of nematode active movement with the passive descent of dead worms within the gravitational field, this study showed no difference in descent-times. The average descent was 1.5 mm/sec ± 0.1 mm/sec for both the live and dead worms using 633 nm coherent light.The second example is a case study of select individual C. elegans changing direction during the descent in a vertical water column. Acceleration and force are analyzed in this example. This case study demonstrates the scope of other physical properties that can be evaluated using SWSI while evaluating the behavior using single wavelengths in an environment that is not accessible with traditional microscopes. Using this analysis we estimated an individual nematode is capable of thrusting with a force in excess of 28 nN.Our findings indicate that living nematodes exert 28 nN when turning, or moving against the gravitational field. The findings further suggest that nematodes passively descend in a column of water, but can actively resist the force of gravity primarily by turning direction.
机译:这项研究证明了一种廉价而直接的技术,该技术可以测量物理特性,例如位置,速度,加速度和与单个波长的光悬浮在水中的线虫悬浮的线虫行为有关的力。我们使用两个不同的示例演示了如何使用单波长阴影成像(SWSI)评估显微生物的运动。第一个示例是对秀丽隐杆线虫在水柱中的平均下降进行的系统且统计上可行的研究。在这项研究中,我们使用了活的和死亡的野生秀丽隐杆线虫。当我们比较线虫主动运动的速度和方向与引力场内死虫的被动下降时,这项研究表明下降时间没有差异。使用633 nm相干光,活虫和死虫的平均下降速度为1.5 mm / sec±0.1 mm / sec。第二个示例是在垂直水柱中选择单个秀丽隐杆线虫在下降过程中改变方向的案例研究。在此示例中分析了加速度和力。本案例研究演示了可以使用SWSI评估的其他物理属性,同时在传统显微镜无法访问的环境中使用单波长评估行为的范围。通过此分析,我们估计单个线虫能够以超过28 nN的力进行推力。我们的发现表明,活着的线虫在转向或逆着重力场移动时会施加28 nN的力。这些发现进一步表明,线虫被动地进入水柱中,但是可以主要通过转向来主动抵抗重力。

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