首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Optical high-resolution analysis of rotational movement: testing circular spatial filter velocimetry (CSFV) with rotating biological cells
【24h】

Optical high-resolution analysis of rotational movement: testing circular spatial filter velocimetry (CSFV) with rotating biological cells

机译:旋转运动的光学高分辨率分析:使用旋转生物细胞测试圆形空间滤波器测速仪(CSFV)

获取原文
获取原文并翻译 | 示例
           

摘要

Circular spatial filtering velocimetry (CSFV) was tested during the microscopic registration of the individual rotations of baker's yeast cells. Their frequency-dependent rotation (electrorotation; ER) was induced in rotating electric fields, which were generated in a glass chip chamber with four electrodes (600 mu m tip-to-tip distance). The electrodes were driven with sinusoidal quadrature signals of 5 or 8 V-PP with frequencies up to 3 MHz. The observed cell rotation was of the order of 1-100 s per revolution. At each measuring frequency, the independent rotations of up to 20 cells were simultaneously recorded with a high-speed camera. CSFV was software-implemented using circular spatial filters with harmonic gratings. ER was proportional to the phase shift between the values of the spatial filtering signal of consecutive frames. ER spectra obtained by CSFV from the rotation velocities at different ER-field frequencies agreed well with manual measurements and theoretical spectra. Oscillations in the rotation velocity of a single cell in the elliptically polarized field near an electrode, which were resolved by CSFV, could not be visually discerned. ER step responses after field-on were recorded at 2500 frames per second. Analysis proved the high temporal resolution of CSFV and revealed a largely linear torque-friction relation during the acceleration phase of ER. Future applications of CSFV will allow for the simple and cheap automated high-resolution analysis of rotational movements where mechanical detection has too low a resolution or is not possible, e.g. in polluted environments or for gas and fluid vortices, microscopic objects, etc.
机译:在面包酵母细胞的各个旋转的微观配准过程中,测试了圆形空间过滤测速仪(CSFV)。它们的频率依赖性旋转(电旋转; ER)在旋转电场中感应产生,旋转电场是在具有四个电极(尖端间距离为600μm)的玻璃芯片腔中产生的。用频率高达3 MHz的5或8 V-PP的正弦正交信号驱动电极。观察到的细胞旋转约为每转1-100 s。在每个测量频率下,用高速摄像机同时记录多达20个电池的独立旋转。 CSFV是使用带有谐波光栅的圆形空间滤波器通过软件实现的。 ER与连续帧的空间滤波信号值之间的相移成比例。通过CSFV从不同ER场频率处的旋转速度获得的ER光谱与手动测量和理论光谱非常吻合。在电极附近的椭圆极化场中,单个电池的旋转速度的振荡无法通过肉眼观察到,无法通过CSFV分辨出来。现场启动后的ER阶跃响应以每秒2500帧的速度记录下来。分析证明了CSFV的高时间分辨率,并揭示了在ER加速阶段的很大程度上线性的扭矩-摩擦关系。 CSFV的未来应用将允许对旋转运动进行简单且廉价的自动化高分辨率分析,其中机械检测的分辨率太低或无法实现,例如在污染的环境中或用于气体和流体涡流,微观物体等。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号