Integrated optical diffractive micrograting-based injection force sensor

X.J. Zhang, S. Zappe, R. W. Bernstein, O. Sahin, C.C. Chen, M. Fish, M. Scott, O. Solgaard
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引用次数: 20

Abstract

We present a micrograting-based injection force sensor integrated with a surface micromachined silicon-nitride injector. The injector is supported by springs of known spring constant, and the injection force is determined from displacement measurements using a high-resolution, miniaturized optical encoder. The sensor exhibits configurable sensitivity and dynamic range, allowing monitoring over a wide range of forces. The periodicity of the encoder response can be used for calibration and to obtain information about the deformation of the target. We used an injector with a measured spring constant of 1.85 N/m for penetration experiments on Drosophila embryos, and found a penetration force of 52.5/spl plusmn/13.2% /spl mu/N and a membrane displacement of 58/spl plusmn/5.2% /spl mu/m.
基于集成光学衍射微光栅的注入力传感器
我们提出了一种基于微光栅的注入力传感器,该传感器集成了表面微机械氮化硅注入器。注入器由已知弹簧常数的弹簧支撑,注入力由高分辨率、小型化的光学编码器通过位移测量确定。该传感器具有可配置的灵敏度和动态范围,允许监测大范围的力。编码器响应的周期性可用于标定和获得有关目标变形的信息。我们使用测量弹簧常数为1.85 N/m的注射器对果蝇胚胎进行穿透实验,发现穿透力为52.5/spl plusmn/13.2% /spl mu/N,膜位移为58/spl plusmn/5.2% /spl mu/m。
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