灵长类动物
超声波
显微镜
人脑
非人灵长类
超声成像
声学显微镜
生物医学工程
材料科学
神经科学
声学
光学
生物
物理
医学
进化生物学
作者
Yuanyang Guo,Qiandong Sun,Yang Xie,Jean-Gabriel Minonzio,Kailiang Xu,Dean Ta
出处
期刊:IEEE Transactions on Ultrasonics Ferroelectrics and Frequency Control
[Institute of Electrical and Electronics Engineers]
日期:2025-01-01
卷期号:: 1-1
标识
DOI:10.1109/tuffc.2025.3611501
摘要
Transcranial ultrasound localization microscopy (t-ULM) faces significant challenges for broader clinical and research applications, particularly in addressing image quality degradation caused by skull. Research on non-human primate (NHP) models, with their human-like cranial characteristics, offers crucial insights for technical innovations and neuroscience applications of t-ULM. In this study, we developed a systematic pipeline for t-ULM of NHP, incorporating low-frequency diverging wave emission, phase aberration correction and microbubble detection equalization. We also explored the contrast agent strategies and imaging plane selection. We achieved an optimal spatial resolution of 93 μm in the coronal section and 105 μm in the sagittal section at an emission frequency of 2.23 MHz, while both maintaining 5-8 cm penetration depth and 6 cm lateral field of view. We also obtained the hemodynamic mapping with a wide dynamic range up to 40 cm/s at 1000 Hz compounded frame rate. This work validates the feasibility of t-ULM in the NHP, and provides important tools and references for further neuroscience applications of t-ULM.
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