神经调节
经颅多普勒
超声波
生物医学工程
脑深部刺激
传感器
图像分辨率
材料科学
医学
放射科
声学
计算机科学
物理
刺激
病理
人工智能
疾病
帕金森病
内科学
作者
Ignas Dilevicius,Wouter A. Serdijn,Tiago Costa
出处
期刊:
日期:2022-07-11
卷期号:2022: 4966-4969
标识
DOI:10.1109/embc48229.2022.9871956
摘要
Deep brain stimulation is currently the only technique used in the clinical setting to modulate the neural activity of deep brain nuclei. Recently, low-intensity transcranial focused ultrasound (LIFU) has been shown to reversibly modulate brain activity through a transcranial pathway. Transcranial LIFU requires a low-frequency ultrasound of around 0.5 MHz due to skull attenuation, thus providing poor axial and lateral resolution. This paper proposes a new conceptual device that would use a stent to place a high-frequency ultrasound array within the brain vasculature to achieve high axial and lateral spatial resolution. The first part of this work identified the most commonly treated deep brain nuclei and examined the human brain vasculature for stent placement. Next, a finite element analysis was carried out using a piezoelectric array that follows the blood vessels curvature, and its ability to focus ultrasound waves in clinically relevant brain nuclei was evaluated. The analytical solution provided promising results for deep brain stimulation via a stent with ultrasound transducers for high spatial resolution neuromodulation.
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