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32 Element Piezoelectric Micromachined Ultrasound Transducer (PMUT) Phased Array for Neuromodulation

Interest in utilizing ultrasound (US) transducers for non-invasive neuromodulation treatment, including for low intensity transcranial focused ultrasound stimulation (tFUS), has grown rapidly. The most widely demonstrated US transducers for tFUS are either bulk piezoelectric transducers or capacitiv...

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Autores principales: TIPSAWAT, PANNAWIT, ILHAM, SHEIKH JAWAD, YANG, JUNG IN, KASHANI, ZEINAB, KIANI, MEHDI, TROLIER-MCKINSTRY, SUSAN
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10021572/
https://www.ncbi.nlm.nih.gov/pubmed/36938316
http://dx.doi.org/10.1109/ojuffc.2022.3196823
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author TIPSAWAT, PANNAWIT
ILHAM, SHEIKH JAWAD
YANG, JUNG IN
KASHANI, ZEINAB
KIANI, MEHDI
TROLIER-MCKINSTRY, SUSAN
author_facet TIPSAWAT, PANNAWIT
ILHAM, SHEIKH JAWAD
YANG, JUNG IN
KASHANI, ZEINAB
KIANI, MEHDI
TROLIER-MCKINSTRY, SUSAN
author_sort TIPSAWAT, PANNAWIT
collection PubMed
description Interest in utilizing ultrasound (US) transducers for non-invasive neuromodulation treatment, including for low intensity transcranial focused ultrasound stimulation (tFUS), has grown rapidly. The most widely demonstrated US transducers for tFUS are either bulk piezoelectric transducers or capacitive micromachine transducers (CMUT) which require high voltage excitation to operate. In order to advance the development of the US transducers towards small, portable devices for safe tFUS at large scale, a low voltage array of US transducers with beam focusing and steering capability is of interest. This work presents the design methodology, fabrication, and characterization of 32-element phased array piezoelectric micromachined ultrasound transducers (PMUT) using 1.5 μm thick Pb(Zr(0.52) Ti(0.48))O(3) films doped with 2 mol% Nb. The electrode/piezoelectric/electrode stack was deposited on a silicon on insulator (SOI) wafer with a 2 μm silicon device layer that serves as the passive elastic layer for bending-mode vibration. The fabricated 32-element PMUT has a central frequency at 1.4 MHz. Ultrasound beam focusing and steering (through beamforming) was demonstrated where the array was driven with 14.6 V square unipolar pulses. The PMUT generated a maximum peak-to-peak focused acoustic pressure output of 0.44 MPa at a focal distance of 20 mm with a 9.2 mm and 1 mm axial and lateral resolution, respectively. The maximum pressure is equivalent to a spatial-peak pulse-average intensity of 1.29 W/cm(2), which is suitable for tFUS application.
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spelling pubmed-100215722023-03-17 32 Element Piezoelectric Micromachined Ultrasound Transducer (PMUT) Phased Array for Neuromodulation TIPSAWAT, PANNAWIT ILHAM, SHEIKH JAWAD YANG, JUNG IN KASHANI, ZEINAB KIANI, MEHDI TROLIER-MCKINSTRY, SUSAN IEEE Open J Ultrason Ferroelectr Freq Control Article Interest in utilizing ultrasound (US) transducers for non-invasive neuromodulation treatment, including for low intensity transcranial focused ultrasound stimulation (tFUS), has grown rapidly. The most widely demonstrated US transducers for tFUS are either bulk piezoelectric transducers or capacitive micromachine transducers (CMUT) which require high voltage excitation to operate. In order to advance the development of the US transducers towards small, portable devices for safe tFUS at large scale, a low voltage array of US transducers with beam focusing and steering capability is of interest. This work presents the design methodology, fabrication, and characterization of 32-element phased array piezoelectric micromachined ultrasound transducers (PMUT) using 1.5 μm thick Pb(Zr(0.52) Ti(0.48))O(3) films doped with 2 mol% Nb. The electrode/piezoelectric/electrode stack was deposited on a silicon on insulator (SOI) wafer with a 2 μm silicon device layer that serves as the passive elastic layer for bending-mode vibration. The fabricated 32-element PMUT has a central frequency at 1.4 MHz. Ultrasound beam focusing and steering (through beamforming) was demonstrated where the array was driven with 14.6 V square unipolar pulses. The PMUT generated a maximum peak-to-peak focused acoustic pressure output of 0.44 MPa at a focal distance of 20 mm with a 9.2 mm and 1 mm axial and lateral resolution, respectively. The maximum pressure is equivalent to a spatial-peak pulse-average intensity of 1.29 W/cm(2), which is suitable for tFUS application. 2022 2022-08-05 /pmc/articles/PMC10021572/ /pubmed/36938316 http://dx.doi.org/10.1109/ojuffc.2022.3196823 Text en https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 License. For more information, see https://creativecommons.org/licenses/by/4.0/
spellingShingle Article
TIPSAWAT, PANNAWIT
ILHAM, SHEIKH JAWAD
YANG, JUNG IN
KASHANI, ZEINAB
KIANI, MEHDI
TROLIER-MCKINSTRY, SUSAN
32 Element Piezoelectric Micromachined Ultrasound Transducer (PMUT) Phased Array for Neuromodulation
title 32 Element Piezoelectric Micromachined Ultrasound Transducer (PMUT) Phased Array for Neuromodulation
title_full 32 Element Piezoelectric Micromachined Ultrasound Transducer (PMUT) Phased Array for Neuromodulation
title_fullStr 32 Element Piezoelectric Micromachined Ultrasound Transducer (PMUT) Phased Array for Neuromodulation
title_full_unstemmed 32 Element Piezoelectric Micromachined Ultrasound Transducer (PMUT) Phased Array for Neuromodulation
title_short 32 Element Piezoelectric Micromachined Ultrasound Transducer (PMUT) Phased Array for Neuromodulation
title_sort 32 element piezoelectric micromachined ultrasound transducer (pmut) phased array for neuromodulation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10021572/
https://www.ncbi.nlm.nih.gov/pubmed/36938316
http://dx.doi.org/10.1109/ojuffc.2022.3196823
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