IEEE Trans Biomed Eng. 2024 Sep;71(9):2590-2598. doi: 10.1109/TBME.2024.3381708. Epub 2024 Aug 21.
Magnetic resonance elastography (MRE) of brain relies on inducing and measuring shear waves in the brain. However, studies have shown vibration could induce changes in cerebral blood flow (CBF), which has a modulation effect and can affect the biomechanical properties measured.
This work demonstrates the initial prototype of the indirect excitation method, which can generate shear waves in the brain with minimal changes in CBF.
A simple system was designed to produce stable vibrations underneath the neck. Instead of directly stimulating the skull, shear waves were indirectly transmitted to the brain through the spine and brainstem.
Phantom results showed that the proposed actuator did not interfere with the routine imaging sequence and successfully generated multifrequency shear waves. When compared with the conventional direct head stimulation method, brain MRE results from the proposed actuator showed no significant differences in terms of intraclass correlation coefficients (ICC) and coefficients of variation (CV). Moreover, the octahedral shear strain (OSS) generated by the indirect excitation in the frontal and parietal lobes decreased by 25.96% and 16.73% respectively. Evaluation of CBF in healthy volunteers revealed no significant changes for the indirect excitation method, whereas significant decreases in CBF were observed in four subregions when employing direct excitation.
The proposed actuator offers a more accurate and comfortable approach to MRE measurements while causing minimal CBF alterations.
This work presents the first demonstration of an indirect excitation brain MRE system that minimizes CBF changes, thus holding potential for future applications of brain MRE.
磁共振弹性成像(MRE)的脑依赖于诱导和测量脑内的剪切波。然而,研究表明,振动可能会引起脑血流(CBF)的变化,这具有调制作用,并可能影响测量的生物力学特性。
本工作展示了间接激励方法的初始原型,该方法可以在最小的 CBF 变化下产生脑内的剪切波。
设计了一个简单的系统,在颈部下方产生稳定的振动。通过脊柱和脑干间接传递剪切波,而不是直接刺激颅骨。
幻影结果表明,所提出的执行器不会干扰常规成像序列,并成功地产生了多频剪切波。与传统的直接头部刺激方法相比,所提出的执行器的脑 MRE 结果在内类相关系数(ICC)和变异系数(CV)方面没有显著差异。此外,间接激励在额区和顶区产生的八面体剪切应变(OSS)分别降低了 25.96%和 16.73%。对健康志愿者的 CBF 评估显示,间接激励方法没有明显变化,而直接激励时,四个亚区的 CBF 明显下降。
所提出的执行器提供了一种更准确和舒适的 MRE 测量方法,同时最小化 CBF 变化。
这项工作首次展示了一种最小化 CBF 变化的间接激励脑 MRE 系统,这为未来的脑 MRE 应用提供了潜力。