DocumentCode :
1317377
Title :
Monolithically Integrated Two-Axis Microtensile Tester for the Mechanical Characterization of Microscopic Samples
Author :
Muntwyler, Simon ; Kratochvil, Bradley E. ; Beyeler, Felix ; Nelson, Bradley J.
Author_Institution :
Inst. of Robot. & Intell. Syst., ETH Zurich, Zurich, Switzerland
Volume :
19
Issue :
5
fYear :
2010
Firstpage :
1223
Lastpage :
1233
Abstract :
This paper describes the first monolithically integrated two-axis microtensile tester and its application to the automated stiffness measurement of single epidermal plant cells. The tensile tester consists of a two-axis electrostatic actuator with integrated capacitive position sensors and a two-axis capacitive microforce sensor. It is fabricated using a bulk silicon microfabrication process. The actuation range is +/-16 m along both axes with a position resolution of 20 nm. The force sensor is capable of measuring forces up to +/-60 N with a resolution down to 60 nN. The position-feedback sensors as well as the force sensor are calibrated by direct comparison with reference standards. A complete uncertainty analysis through the entire calibration chain based on the Monte Carlo method is presented. The functionality of the tensile tester is demonstrated by the automated stiffness measurement of the elongated cells in plant hairs (trichomes) as a function of their size. This enables a quantitative understanding and a model-based simulation of plant growth based on actual measurement data.
Keywords :
Monte Carlo methods; bioMEMS; biological specimen preparation; biological techniques; biology computing; biomechanics; botany; capacitive sensors; cellular biophysics; elastic constants; electrostatic actuators; elemental semiconductors; force sensors; microfabrication; microsensors; physiological models; silicon; tensile testing; Monte Carlo method; Si; automated stiffness measurement; bulk silicon microfabrication process; calibration chain; integrated capacitive position sensors; mechanical characterization; microscopic samples; model-based simulation; monolithically integrated two-axis microtensile tester; plant growth; plant hairs; position-feedback sensors; single epidermal plant cells; size 20 nm; trichomes; two-axis capacitive microforce sensor; two-axis electrostatic actuator; uncertainty analysis; Actuators; Calibration; Force; Force sensors; Measurement uncertainty; Uncertainty; Calibration; capacitive microforce and position sensing; electrostatic actuation; uncertainty analysis;
fLanguage :
English
Journal_Title :
Microelectromechanical Systems, Journal of
Publisher :
ieee
ISSN :
1057-7157
Type :
jour
DOI :
10.1109/JMEMS.2010.2067443
Filename :
5567125
Link To Document :
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