DocumentCode :
2631585
Title :
Method to study the single cell´s time-variation adhesion strength during the manipulation inside ESEM
Author :
Shen, Yajing ; Nakajima, Masahiro ; Najdovski, Zoran ; Yang, Zhan ; Kojima, Masaru ; Kojima, Seiji ; Homma, Michio ; Fukuda, Toshio
Author_Institution :
Dept. of Micro-Nano Syst. Eng., Nagoya Univ., Nagoya, Japan
fYear :
2011
fDate :
6-9 Nov. 2011
Firstpage :
210
Lastpage :
215
Abstract :
The cell adhesion force to the substrate is important for the cell manipulation. In our previous work, the maximum cell adhesion force during the manipulation has been studied. However, the relation ship of the force virus time was still not clear. In this paper, a method to measure the time-variation adhesion force during the manipulation was proposed. A hybrid laser sensor and nanorobotic manipulation system was build inside an environment scanning electron microscope (ESEM). A micro putter was fabricated from an atomic force microscope (AFM) cantilever through focused ion beam (FIB) etching technique. The laser head and the micro putter were assembled and fixed to the nano manipulator inside ESEM chamber. The displacement between the micro putter and the laser head can be measured by the laser sensor system. The relationship of the deflection of the micro putter and the applied force was calibrated by nanorobotic manipulation approach. The single cell´s time-variation adhesion force to substrate surface was measured based on this hybrid system. The result indicates that both the dynamic data and precise observation can be achieved owing to the combination of the advantages of AFM and ESEM nano robotic manipulation system.
Keywords :
adhesion; atomic force microscopy; bioMEMS; biomechanics; biomembranes; cantilevers; focused ion beam technology; laser applications in medicine; manipulators; medical robotics; nanobiotechnology; scanning electron microscopy; sputter etching; AFM cantilever; ESEM; atomic force microscope; cell adhesion force; cell manipulation; environment scanning electron microscope; focused ion beam etching; laser sensor system; microputter; nanorobotic manipulation system; time variation adhesion strength; Aluminum; Manipulators; Measurement by laser beam; Nanobioscience;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Micro-NanoMechatronics and Human Science (MHS), 2011 International Symposium on
Conference_Location :
Nagoya
ISSN :
Pending
Print_ISBN :
978-1-4577-1360-6
Type :
conf
DOI :
10.1109/MHS.2011.6102180
Filename :
6102180
Link To Document :
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