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用于经颅多焦点神经刺激的电容式微机械超声换能器的设计、制造与特性分析

Design, Fabrication, and Characterization of Capacitive Micromachined Ultrasonic Transducers for Transcranial, Multifocus Neurostimulation.

作者信息

Ibn Minhaj Tamzid, Annayev Muhammetgeldi, Adelegan Oluwafemi J, Biliroğlu Ali Önder, Yamaner Feysel Yalçın, Oralkan Ömer

机构信息

Department of Materials Science and Engineering, NC State University, Raleigh, NC 27695, USA.

Department of Electrical and Computer Engineering, NC State University, Raleigh, NC 27695, USA.

出版信息

Micromachines (Basel). 2024 Aug 30;15(9):1106. doi: 10.3390/mi15091106.

Abstract

In a recent study using 3-D fullwave simulations, it was shown for a nonhuman primate model that a helmet-shaped 3D array of 128 transducer elements can be assembled for neurostimulation in an optimized configuration with the accommodation of an imaging aperture. Considering all acoustic losses, according to this study, for a nonhuman primate skull, the assembly of the proposed transducers was projected to produce sufficient focusing gain in two different focal positions at deep and shallow brain regions, thus providing sufficient acoustic intensity at these distinct focal points for neural stimulation. This array also has the ability to focus on multiple additional brain regions. In the work presented here, we designed and fabricated a single 15 mm diameter capacitive micromachined ultrasonic transducer (CMUT) element operating at 800 kHz central frequency with a 480 kHz 3 dB bandwidth, capable of producing a 190 kPa peak negative pressure (PNP) on the surface. The corresponding projected transcranial spatial peak pulse average intensity (I) was 28 Wcm, and the mechanical index (MI) value was 1.1 for an array of 128 of these elements.

摘要

在最近一项使用三维全波模拟的研究中,针对非人类灵长类动物模型表明,可以将128个换能器元件组装成头盔形状的三维阵列,以优化配置进行神经刺激,并容纳成像孔径。根据这项研究,考虑到所有声学损耗,对于非人类灵长类动物的头骨,所提议的换能器组件预计会在大脑深部和浅部区域的两个不同焦点位置产生足够的聚焦增益,从而在这些不同的焦点处提供足够的声强用于神经刺激。该阵列还能够聚焦于多个其他脑区。在本文所展示的工作中,我们设计并制造了一个直径为15毫米的单个电容式微机械超声换能器(CMUT)元件,其中心频率为800千赫兹,3分贝带宽为480千赫兹,能够在表面产生190千帕的峰值负压(PNP)。对于由128个这样的元件组成的阵列,相应的预计经颅空间峰值脉冲平均强度(I)为28瓦/平方厘米,机械指数(MI)值为1.1。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ddac/11434040/097e18eb4d37/micromachines-15-01106-g001.jpg

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