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New Optical Sensor for Monitoring the Micropipette Motion

机译:用于监视微量移液器运动的新型光学传感器

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A novel noncontact sensor is developed to monitor the displacements of a drawn glass pipette tip. These pipettes are commonly used in various cellular-injection applications, from in vitro fertilization to cloning. The physics of the underlying cellular-piercing process, however, is quite complex and presently not fully understood primarily due to the absence of appropriate motion sensors. A high-sensitivity noncontact sensor is needed to study this delicate microdynamics. We report here on an optical microdevice, which is developed for this objective. In the core of the sensing, properly positioned four photodiodes receive the light, which emanates from the target micropipette. Appropriate electronics and sensitivity-enhancement techniques are also utilized. The experimental results are presented from a preliminary test study on a prototype setup. These results are very encouraging in that we can already report submicrometer-level motion-detection capability.
机译:开发了一种新型的非接触式传感器,以监控玻璃移液器吸头的位移。这些移液器通常用于从体外受精到克隆的各种细胞注射应用中。然而,潜在的细胞穿刺过程的物理过程非常复杂,目前主要由于缺乏合适的运动传感器而尚未被完全理解。需要一个高灵敏度的非接触式传感器来研究这种微妙的微观动力学。我们在此报告为实现此目的而开发的光学微型设备。在传感的核心中,正确放置的四个光电二极管接收从目标微量移液器发出的光。还采用了适当的电子技术和灵敏度增强技术。实验结果来自对原型设置的初步测试研究。这些结果非常令人鼓舞,因为我们已经可以报告亚微米级的运动检测功能。

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