IEEE Trans Biomed Circuits Syst. 2020 Apr;14(2):305-318. doi: 10.1109/TBCAS.2019.2959439. Epub 2019 Dec 12.
The paper presents the design and validation of body-conformal active ultrasound patches with integrated imaging and modulation modalities for image-guided neural therapy. A mechanically-flexible linear 64-element array of piezoelectric transducers with a resonance frequency of 5 MHz was designed for nerve localization. A second 8-element array using larger elements was integrated on the wearable probe for low intensity focused ultrasound neuromodulation at a resonance frequency of 1.3 MHz. Full-wave simulations were used to model the flexible arrays and estimate their generated pressure profiles. A focal depth of 10-20 mm was assumed for beamforming and focusing to support modulation of the vagus, tibial, and other nerves. A strain sensor integrated on the probe provides patient-specific feedback information on array curvature for real-time optimization of focusing and image processing. Each patch also includes high voltage (HV) multiplexers, transmit/receive switches, and pre-amplifiers that simplify connectivity and also improve the signal-to-noise ratio (SNR) of the received echo signals by ∼ 5 dB. Experimental results from a flexible prototype show a sensitivity of 80 kPa/V with ∼ 3 MHz bandwidth for the modulation and 20 kPa/V with ∼ 6 MHz bandwidth for the imaging array. An algorithm for accurate and automatic localization of targeted nerves based on using nearby blood vessels (e.g., the carotid artery) as image markers is also presented.
本文提出了一种具有集成成像和调制模式的体贴式主动超声贴片的设计和验证,用于图像引导的神经治疗。设计了一个具有 5 MHz 谐振频率的机械柔性线性 64 元压电换能器阵列,用于神经定位。第二个 8 元阵列使用更大的元件集成在可穿戴探头上,用于 1.3 MHz 低强度聚焦超声神经调节。全波模拟用于模拟柔性阵列并估计其产生的压力分布。假设束形成和聚焦的焦深为 10-20 mm,以支持迷走神经、胫神经和其他神经的调制。探头上集成的应变传感器为阵列曲率提供患者特定的反馈信息,以实时优化聚焦和图像处理。每个贴片还包括高压 (HV) 多路复用器、发射/接收开关和前置放大器,简化了连接,还将接收回波信号的信噪比 (SNR) 提高了约 5 dB。柔性原型的实验结果表明,调制的灵敏度为 80 kPa/V,带宽为 3 MHz,成像阵列的灵敏度为 20 kPa/V,带宽为 6 MHz。还提出了一种基于使用附近血管(例如颈动脉)作为图像标记来准确自动定位目标神经的算法。