4.7 Article

A Miniature High-Frequency Rotary Ultrasonic Encoder for Internal Ultrasound Imaging

期刊

IEEE SENSORS JOURNAL
卷 21, 期 12, 页码 13137-13145

出版社

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC
DOI: 10.1109/JSEN.2021.3069433

关键词

Transducers; Acoustics; Ultrasonic imaging; Gratings; Sensors; Shafts; Catheters; Ultrasonic encoder; internal ultrasound imaging; high frequency ultrasound; nonuniform rotational deformity

资金

  1. National Key Research and Development Program of China [2019YFC0120500, 2018YFC0116201]
  2. National Natural Science Foundation of China [21927803, 11704397]
  3. Funds of Chinese Academy of Sciences [Y201961, 20A122062ZY, YJKYYQ20180031]
  4. Funds of Suzhou Science and Technology Poject [SS202062]

向作者/读者索取更多资源

A high-frequency rotary ultrasonic encoder with cylinder gratings was developed to fix NURD and obtain high quality restored image dynamically. The miniature encoder with a diameter of 3 mm and resolutions up to 64 pulses per revolution is demonstrated as the smallest and highest frequency rotary ultrasonic encoder reported, showing great potential for ultrasonic endoscopy, OCT, and other mechanical scanning imaging.
High-speed mechanical rotation scanning is the main imaging method of current high-frequency internal ultrasound. Due to uneven drag on the catheter driveshaft leading to changes in the rotational speed, Nonuniform rotational deformity (NURD) is critically limited for the quantitative analysis of internal ultrasound use. To date there have been no techniques shown that provide effective and dynamic modulation of NURD. In this work, a micro structured high-frequency rotary ultrasonic encoder with cylinder gratings was developed, which can dynamically fix the NURD and get high quality restored image. Accordingly, a prototyped micro rotary 50-MHZ ultrasonic encoder with a miniature diameter of 3 mm and a selection of resolutions up to 64 pulses per revolution, which should be the smallest and highest frequency rotary ultrasonic encoder ever reported, was demonstrated based on an endoscopic ultrasound system. The miniature high-frequency rotary ultrasonic encoder shows great potential for ultrasonic endoscopy, OCT, and other mechanical scanning imaging.

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