Integrated design of micro force sensor oriented to cell micro-operation.

Zhen An, Chaoqun Xiang, Jinming Wang, Liping Dong, Lina Hao

Journal: Technology and health care : official journal of the European Society for Engineering and Medicine 2016;23 Suppl 2():S551-8

PMID: 26410523

Abstract

BACKGROUND

During the process of cell micro operation, the contact force between the entry needle and the cell membrane is usually a very small area to be tested.

OBJECTIVE

These two features have been utilized to design a high precision micro force sensor to provide a force feedback in the process of cell micro operation.

METHODS

However, PVDF (Polyvinylidene Fluoride) has continued to display both a wide range of frequency response and a highly sensitive transform between force and electricity. In this paper a charge signal is obtained. In order to transform the charge signal into a voltage signal, a signal processing circuit was designed. The data acquisition card PCI-6221 (National Instruments) was used. It was employed to collect the voltage signal.

RESULTS

The resultant micro force sensor was calibrated by using a rating test.

CONCLUSIONS

The experimental test results demonstrated that the sensitivity and linearity of the designed micro force sensor were higher than the sensitivity and linearity of a traditional piezoelectric sensor.

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