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Cited 21 time in webofscience Cited 22 time in scopus
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Wireless ultrasound surgical system with enhanced power and amplitude performances

Authors
Kim, J.You, K.Choe, S.-H.Choi, H.
Issue Date
Aug-2020
Publisher
MDPI AG
Keywords
Battery module; Ultrasound transducer; Wireless ultrasound surgical system
Citation
Sensors (Switzerland), v.20, no.15, pp.1 - 23
Journal Title
Sensors (Switzerland)
Volume
20
Number
15
Start Page
1
End Page
23
URI
https://scholarworks.bwise.kr/gachon/handle/2020.sw.gachon/78051
DOI
10.3390/s20154165
ISSN
1424-8220
Abstract
A wireless ultrasound surgical system (WUSS) with battery modules requires efficient power consumption with appropriate cutting effects during surgical operations. Effective cutting performances of the ultrasound transducer (UT) should be produced for ultrasound surgical knives for effective hemostasis performance and efficient dissection time. Therefore, we implemented a custom-made UT with piezoelectric material and re-poling process, which is applied to enhance the battery power consumption and output amplitude performances of the WUSS. After the re-poling process of the UT, the quality factor increased from 1231.1 to 2418 to minimize the unwanted heat generation. To support this UT, we also developed a custom-made generator with a transformer and developed 2nd harmonic termination circuit, control microcontroller with an advanced reduced instruction set computer machine (ARM) controller, and battery management system modules to produce effective WUSS performances. The generator with a matching circuit in the WUSS showed a peak-to-peak output voltage and current amplitude of 166 V and 1.12 A, respectively, at the resonant frequency. The performance with non-contact optical vibrators was also measured. In the experimental data, the developed WUSS reduced power consumption by 3.6% and increased the amplitude by 20% compared to those of the commercial WUSS. Therefore, the improved WUSS performances could be beneficial for hemostatic performance and dissection time during surgical operation because of the developed UT with a piezoelectric material and re-poling process. © 2020 by the authors. Licensee MDPI, Basel, Switzerland.
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