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Three dimensional time-gated tracking of non-blinking quantum dots in live cells

机译:在直播中的非闪烁量子点的三维时间门控跟踪

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Single particle tracking has provided a wealth of information about biophysical processes such as motor protein transport and diffusion in cell membranes. However, motion out of the plane of the microscope or blinking of the fluorescent probe used as a label generally limits observation times to several seconds. Here, we overcome these limitations by using novel non-blinking quantum dots as probes and employing a custom 3D tracking microscope to actively follow motion in three dimensions (3D) in live cells. Signal-to-noise is improved in the cellular milieu through the use of pulsed excitation and time-gated detection.
机译:单个粒子跟踪提供了有关生物物理方法的大量信息,例如电机蛋白质转运和细胞膜扩散。然而,从显微镜的平面或闪烁用作标签的荧光探针的运动通常限制观察时间到几秒钟。这里,我们通过使用新的非闪烁量子点作为探针来克服这些限制,并采用自定义3D跟踪显微镜在直播电池中主动跟踪三维(3D)的运动。通过使用脉冲激励和时间门控检测,在蜂窝环境中提高了信号 - 噪声。

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