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一种基于超短回波时间颅骨声学模型和相位恢复技术的新型经颅磁共振引导聚焦超声方法。

A novel transcranial MR Guided focused ultrasound method based on the ultrashort echo time skull acoustic model and phase retrieval techniques.

机构信息

College Of Physics, Sichuan University, Chengdu, China.

Huaxi MR Research Center (HMRRC), Department of Radiology, West China Hospital of Sichuan University, Chengdu, 610041, China.

出版信息

Sci Rep. 2024 May 24;14(1):11876. doi: 10.1038/s41598-024-62500-6.

Abstract

Transcranial ultrasound stimulation (TUS) has been clinically applied as a neuromodulation tool. Particularly, the phase array ultrasound can be applied in TUS to non-invasively focus on the cortex or deep brain. However, the vital phase distortion of the ultrasound induced by the skull limits its clinical application. In the current study, we aimed to develop a hybrid method that combines the ultrashort echo time (UTE) magnetic resonance imaging (MRI) sequences with the prDeep technique to achieve focusing ventral intermediate thalamic nucleus (VIM). The time-reversal (TR) approach of the UTE numerical acoustic model of the skull combined with the prDeep algorithm was used to reduce the number of iterations. The skull acoustic model simulation therapy process was establish to valid this method's prediction and focus performance, and the classical TR method were considered as the gold standard (GS). Our approach could restore 75% of the GS intensity in 25 iteration steps, with a superior the noise immunity. Our findings demonstrate that the phase aberration caused by the skull can be estimated using phase retrieval techniques to achieve a fast and accurate transcranial focus. The method has excellent adaptability and anti-noise capacity for satisfying complex and changeable scenarios.

摘要

经颅超声刺激(TUS)已在临床上用作神经调节工具。特别是,相控阵超声可应用于 TUS 中,以非侵入性的方式聚焦于皮质或深部脑区。然而,颅骨对超声的相位失真限制了其临床应用。在本研究中,我们旨在开发一种混合方法,将超短回波时间(UTE)磁共振成像(MRI)序列与 prDeep 技术相结合,以实现对腹侧中间丘脑核(VIM)的聚焦。颅骨 UTE 数值声学模型的时间反转(TR)方法与 prDeep 算法相结合,以减少迭代次数。建立颅骨声学模型模拟治疗过程来验证该方法的预测和聚焦性能,经典的 TR 方法被认为是金标准(GS)。我们的方法可以在 25 次迭代步骤中恢复 75%的 GS 强度,具有更好的抗噪能力。我们的研究结果表明,可以使用相位恢复技术来估计颅骨引起的相位误差,以实现快速准确的经颅聚焦。该方法对满足复杂多变的场景具有出色的适应性和抗噪能力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/71a2/11636931/a3297c99350b/41598_2024_62500_Fig1_HTML.jpg

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