DocumentCode :
129653
Title :
Multiparametric characterization of a single cell by an ultrasound and optical combined microscope
Author :
Saijo, Yoshifumi ; Shikama, Joe ; Yoshida, Kenta ; Nagaoka, Ryo ; Arakawa, Mototaka ; Kobayashi, Kaoru
Author_Institution :
Grad. Sch. of Biomed. Eng., Tohoku Univ., Sendai, Japan
fYear :
2014
fDate :
3-6 Sept. 2014
Firstpage :
727
Lastpage :
730
Abstract :
Biomechanics of the cell has been gathering much attention because it affects the pathological status in atherosclerosis and cancer. In the present study, an ultrasound and optical combined microscope system for characterization of a single cell with multiple ultrasound parameters was developed. The central frequency of the transducer was 375 MHz and the scan area was 80 × 80 micron with up to 200 × 200 sampling points. An inversed optical microscope was installed in the system and simultaneous observation of the cells cultured in the petri-dish was available. Two-dimensional mapping of the multiple ultrasound parameters such as attenuation, sound speed and acoustic impedance as well as the thickness and density of the cell was realized by the system. Sound speed and thickness of 3T3-L1 fibroblast cell were successfully obtained by the system. The ultrasound and optical combined microscope system may contribute to understand the cellular biomechanics.
Keywords :
acoustic impedance; acoustic microscopy; acoustic signal processing; acoustic wave velocity; biomechanics; biomedical ultrasonics; cancer; cellular biophysics; optical microscopy; ultrasonic transducers; 3T3-Ll fibroblast cell; acoustic impedance; atherosclerosis; attenuation; cancer; cell density; cellular biomechanics; multiparametric characterization; multiple ultrasound parameters; optical microscopy; pathological status; sampling points; sound speed; two-dimensional mapping; ultrasound microscope system; ultrasound microscopy; ultrasound system; Biomechanics; Biomedical optical imaging; Image resolution; Materials; Optical imaging; Optical reflection; Thickness measurement; acoustic microscopy; biomechanics; cell; sound speed;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Ultrasonics Symposium (IUS), 2014 IEEE International
Conference_Location :
Chicago, IL
Type :
conf
DOI :
10.1109/ULTSYM.2014.0179
Filename :
6932111
Link To Document :
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