Development of an Accurate Resonant Frequency Controlled Wire Ultrasound Surgical Instrument

Our developed wire ultrasound surgical instrument comprises a bolt-clamped Langevin ultrasonic transducer (BLUT) fabricated by PMN-PZT single crystal material due to high mechanical quality factor and electromechanical coupling coefficient, a waveguide in the handheld instrument, and a generator ins...

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Main Authors: Jungsuk Kim, Kyeongjin Kim, Sun-Ho Choe, Hojong Choi
Format: Article
Language:English
Published: MDPI AG 2020-05-01
Series:Sensors
Subjects:
Online Access:https://www.mdpi.com/1424-8220/20/11/3059
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spelling doaj-09952954bd154c7282bc2545ef0643dd2020-11-25T03:17:49ZengMDPI AGSensors1424-82202020-05-01203059305910.3390/s20113059Development of an Accurate Resonant Frequency Controlled Wire Ultrasound Surgical InstrumentJungsuk Kim0Kyeongjin Kim1Sun-Ho Choe2Hojong Choi3Department of Biomedical Engineering, Gachon University, 534-2, Hambakmoe-ro, Incheon 21936, KoreaDepartment of Medical IT Convergence Engineering, Kumoh National Institute of Technology, 350-27 Gumi-daero, Gumi 39253, KoreaR&D Center, Metabiomed Corporation, 215 Osongsaenmyeong1-ro, Chenongu 28161, KoreaDepartment of Medical IT Convergence Engineering, Kumoh National Institute of Technology, 350-27 Gumi-daero, Gumi 39253, KoreaOur developed wire ultrasound surgical instrument comprises a bolt-clamped Langevin ultrasonic transducer (BLUT) fabricated by PMN-PZT single crystal material due to high mechanical quality factor and electromechanical coupling coefficient, a waveguide in the handheld instrument, and a generator instrument. To ensure high performance of wire ultrasound surgical instruments, the BLUT should vibrate at an accurate frequency because the BLUT’s frequency influences hemostasis and the effects of incisions on blood vessels and tissues. Therefore, we implemented a BLUT with a waveguide in the handheld instrument using a developed assembly jig process with impedance and network analyzers that can accurately control the compression force using a digital torque wrench. A generator instrument having a main control circuit with a low error rate, that is, an output frequency error rate within ±0.5% and an output voltage error rate within ±1.6%, was developed to generate the accurate frequency of the BLUT in the handheld instrument. In addition, a matching circuit between the BLUT and generator instrument with a network analyzer was developed to transfer displacement vibration efficiently from the handheld instrument to the end of the waveguide. Using the matching circuit, the measured S-parameter value of the generator instrument using a network analyzer was −24.3 dB at the resonant frequency. Thus, our proposed scheme can improve the vibration amplitude and accuracy of frequency control of the wire ultrasound surgical instrument due to developed PMN-PZT material and assembly jig process.https://www.mdpi.com/1424-8220/20/11/3059bolt-clamped Langevin ultrasonic transducerwire ultrasound surgical instrumentgenerator instrumenthandheld instrument
collection DOAJ
language English
format Article
sources DOAJ
author Jungsuk Kim
Kyeongjin Kim
Sun-Ho Choe
Hojong Choi
spellingShingle Jungsuk Kim
Kyeongjin Kim
Sun-Ho Choe
Hojong Choi
Development of an Accurate Resonant Frequency Controlled Wire Ultrasound Surgical Instrument
Sensors
bolt-clamped Langevin ultrasonic transducer
wire ultrasound surgical instrument
generator instrument
handheld instrument
author_facet Jungsuk Kim
Kyeongjin Kim
Sun-Ho Choe
Hojong Choi
author_sort Jungsuk Kim
title Development of an Accurate Resonant Frequency Controlled Wire Ultrasound Surgical Instrument
title_short Development of an Accurate Resonant Frequency Controlled Wire Ultrasound Surgical Instrument
title_full Development of an Accurate Resonant Frequency Controlled Wire Ultrasound Surgical Instrument
title_fullStr Development of an Accurate Resonant Frequency Controlled Wire Ultrasound Surgical Instrument
title_full_unstemmed Development of an Accurate Resonant Frequency Controlled Wire Ultrasound Surgical Instrument
title_sort development of an accurate resonant frequency controlled wire ultrasound surgical instrument
publisher MDPI AG
series Sensors
issn 1424-8220
publishDate 2020-05-01
description Our developed wire ultrasound surgical instrument comprises a bolt-clamped Langevin ultrasonic transducer (BLUT) fabricated by PMN-PZT single crystal material due to high mechanical quality factor and electromechanical coupling coefficient, a waveguide in the handheld instrument, and a generator instrument. To ensure high performance of wire ultrasound surgical instruments, the BLUT should vibrate at an accurate frequency because the BLUT’s frequency influences hemostasis and the effects of incisions on blood vessels and tissues. Therefore, we implemented a BLUT with a waveguide in the handheld instrument using a developed assembly jig process with impedance and network analyzers that can accurately control the compression force using a digital torque wrench. A generator instrument having a main control circuit with a low error rate, that is, an output frequency error rate within ±0.5% and an output voltage error rate within ±1.6%, was developed to generate the accurate frequency of the BLUT in the handheld instrument. In addition, a matching circuit between the BLUT and generator instrument with a network analyzer was developed to transfer displacement vibration efficiently from the handheld instrument to the end of the waveguide. Using the matching circuit, the measured S-parameter value of the generator instrument using a network analyzer was −24.3 dB at the resonant frequency. Thus, our proposed scheme can improve the vibration amplitude and accuracy of frequency control of the wire ultrasound surgical instrument due to developed PMN-PZT material and assembly jig process.
topic bolt-clamped Langevin ultrasonic transducer
wire ultrasound surgical instrument
generator instrument
handheld instrument
url https://www.mdpi.com/1424-8220/20/11/3059
work_keys_str_mv AT jungsukkim developmentofanaccurateresonantfrequencycontrolledwireultrasoundsurgicalinstrument
AT kyeongjinkim developmentofanaccurateresonantfrequencycontrolledwireultrasoundsurgicalinstrument
AT sunhochoe developmentofanaccurateresonantfrequencycontrolledwireultrasoundsurgicalinstrument
AT hojongchoi developmentofanaccurateresonantfrequencycontrolledwireultrasoundsurgicalinstrument
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