Title :
Simulation for viscoelastic effects of SH-SAW biosensor
Author :
Goto, Misako ; Yatsuda, Hiromi ; Kondoh, Jun
Author_Institution :
Biosensor Project, Japan Radio Co., Ltd., Fujimino, Japan
Abstract :
This paper describes a simulation for the shear horizontal surface acoustic wave (SH-SAW) immunoassay biosensor on quartz. A simulation method which was proposed by Campbell and Jones has been generally used to calculate SH-SAW propagation characteristics. In the analysis of the bioreactions with mass loading, the sensitivities of SH-SAW biosensors are too small to confirm the experimental results. In the analysis of the bio-reactions with viscosity sensitivity, the absolute values of velocity and attenuation changes of SH-SAWs agreed with the experiments. In this paper, we analyze the bio-reactions as viscoelastic sensitivity of SH-SAW biosensors using a numerical calculation method. In order to confirm the proposed numerical analysis, 250MHz SH-SAW biosensors on quartz substrates were tested using different thickness of bovine serum albumin (BSA) layers. A simple viscoelastic model is applied to explain the experimental results.
Keywords :
biochemistry; biomechanics; biosensors; molecular biophysics; numerical analysis; proteins; surface acoustic wave sensors; viscoelasticity; viscosity; BSA layers; SH-SAW immunoassay biosensors; SH-SAW propagation characteristics; SiO2; bioreactions; bovine serum albumin layers; mass loading; numerical calculation; quartz substrates; shear horizontal surface acoustic wave immunoassay biosensor; viscoelastic effects; viscoelastic sensitivity; viscosity sensitivity; Biological system modeling; Biosensors; Films; Gold; Liquids; Loading; Surface acoustic waves; SH-SAW; biosenosr; numerical analysis; viscoelasticity;
Conference_Titel :
Ultrasonics Symposium (IUS), 2014 IEEE International
Conference_Location :
Chicago, IL
DOI :
10.1109/ULTSYM.2014.0511