Karasan Ekin, Chen Jingjia, Maravilla Julian, Zhang Zhiyong, Liu Chunlei, Lustig Michael
Department of Electrical Engineering and Computer Sciences, University of California, Berkeley, Berkeley, CA, USA.
Bernard and Irene Schwartz Center for Biomedical Imaging, Department of Radiology, New York University Grossman School of Medicine, New York, NY, USA.
Nat Commun. 2025 Apr 24;16(1):3890. doi: 10.1038/s41467-025-59108-3.
The cerebral venous system plays a crucial role in neurological and vascular conditions, yet its hemodynamics remain underexplored due to its complexity and variability across individuals. To address this, we develop a venous perfusion source mapping method using Displacement Spectrum MRI, a non-contrast technique that leverages blood water as an endogenous tracer. Our technique encodes spatial information into the magnetization of blood water spins during tagging and detects it once the tagged blood reaches the brain's surface, where the signal-to-noise ratio is 3-4 times higher. We resolve the sources of blood entering the imaging slice across short (10 ms) to long (3 s) evolution times, effectively capturing perfusion sources in reverse. This approach enables the measurement of slow venous blood flow, including potential contributions from capillary beds and surrounding tissue. We demonstrate perfusion source mapping in the superior cerebral veins, verify its sensitivity to global perfusion modulation induced by caffeine, and establish its specificity by showing repeatable local perfusion modulation during neural activation. From all blood within the imaging slice, our method localizes the portion originating from an activated region upstream.
脑静脉系统在神经和血管疾病中起着至关重要的作用,然而,由于其复杂性和个体间的变异性,其血流动力学仍未得到充分研究。为了解决这个问题,我们开发了一种使用位移频谱磁共振成像的静脉灌注源映射方法,这是一种非对比技术,利用血水作为内源性示踪剂。我们的技术在标记过程中将空间信息编码到血水自旋的磁化中,并在标记的血液到达脑表面时进行检测,脑表面的信噪比要高3至4倍。我们解析了在短(10毫秒)到长(3秒)演化时间内进入成像切片的血液来源,有效地反向捕获灌注源。这种方法能够测量缓慢的静脉血流,包括来自毛细血管床和周围组织的潜在贡献。我们展示了大脑上静脉中的灌注源映射,验证了其对咖啡因诱导的整体灌注调节的敏感性,并通过显示神经激活期间可重复的局部灌注调节来确定其特异性。从成像切片内的所有血液中,我们的方法定位了源自上游激活区域的部分。