Kong Qingle, Wu Yue, Weng Dehe, An Jing, Zhuo Yan, Zhang Zihao
State Key Laboratory of Brain and Cognitive Science, Beijing MR Center for Brain Research, Institute of Biophysics, Chinese Academy of Sciences, Beijing, China.
MR Collaboration, Siemens Healthcare Ltd, Beijing, China.
Front Neurosci. 2021 Feb 25;15:620172. doi: 10.3389/fnins.2021.620172. eCollection 2021.
The impairment of microvessels can lead to neurologic diseases such as stroke and vascular dementia. The imaging of lumen and vessel wall of perforating arteries requires an extremely high resolution due to their small caliber size. Current imaging techniques have the difficulty in observing the wall of perforating arteries. In this study, we developed a 3D inner-volume (IV) TSE (SPACE) sequence with optimized 2D spatially selective excitation (SSE) RF pulses. The optimized SSE RF pulses were designed through a series of optimization including iterative RF pulse design, trajectory optimization, and phase convention of Carr-Purcell-Meiboom-Gill (CPMG) condition to meet the perforating arteries imaging demands. High resolution of isotropic 0.30 mm within 10 min was achieved for the black- blood images of lenticulostriate artery (LSA). The LSA lumen and vessel wall were imaged by the IV-SPACE sequence simultaneously. Images obtained by the optimized RF pulse has fewer aliasing artifacts from outside of ROI than the traditional pulse. The IV-SPACE images showed clearer delineation of vessel wall and lumen of LSA than conventional SPACE images. IV-SPACE might be a promising method for detecting microvasculopathies of cerebral vascular diseases.
微血管损伤可导致中风和血管性痴呆等神经系统疾病。由于穿支动脉管径小,对其管腔和血管壁成像需要极高的分辨率。目前的成像技术在观察穿支动脉壁方面存在困难。在本研究中,我们开发了一种具有优化二维空间选择性激发(SSE)射频脉冲的三维容积内(IV)快速自旋回波(SPACE)序列。通过包括迭代射频脉冲设计、轨迹优化以及 Carr-Purcell-Meiboom-Gill(CPMG)条件的相位约定等一系列优化来设计优化的 SSE 射频脉冲,以满足穿支动脉成像需求。在 10 分钟内实现了豆纹动脉(LSA)黑血图像各向同性 0.30 毫米的高分辨率。IV-SPACE 序列同时对 LSA 的管腔和血管壁进行了成像。与传统脉冲相比,优化射频脉冲获得的图像在感兴趣区(ROI)外的混叠伪影更少。IV-SPACE 图像显示 LSA 的血管壁和管腔比传统 SPACE 图像更清晰。IV-SPACE 可能是检测脑血管疾病微血管病变的一种有前景的方法。