Alperin N, Hushek S G, Lee S H, Sivaramakrishnan A, Lichtor T
Department of Radiology, The University of Illinois at Chicago, 60612, USA.
Acta Neurochir Suppl. 2005;95:177-81. doi: 10.1007/3-211-32318-x_38.
Postural related changes in cerebral hemodynamics and hydrodynamics were studied using Magnetic Resonance Imaging (MRI) measurements of cerebral blood flow and cerebrospinal fluid (CSF) flow dynamics. Ten healthy volunteers (mean age 29 +/- 7) were studied in supine and upright (sitting) postures. A Cine phase-contrast MRI technique was used to image the pulsatile blood flow to the brain, the venous outflow through the internal jugular, epidural, and vertebral veins, and the bi-directional CSF flow between the cranium and the spinal canal. Previously published analyses were applied to calculate and compare total cerebral blood flow (TCBF), intracranial compliance and pressure in both postures. A lower (12%) mean TCBF was measured in the upright position compared to supine position. A considerable smaller amount of CSF flow between the cranium and the spinal canal (58%), a much larger intracranial compliance (a 2.8-fold increase), and a corresponding decrease in the MRI-derived ICP were also measured in the sitting position. These changes suggest that the increased cerebrovascular and intracranial compliances in the upright posture are primarily due to reduced amounts of blood and CSF residing in their respective intracranial compartments in the upright position. This work demonstrates the ability to quantify neurophysiologic parameters associated with regulation of cerebral hemodynamics and hydrodynamics from dynamic MR imaging of blood and CSF flows.
利用磁共振成像(MRI)测量脑血流和脑脊液(CSF)流动动力学,研究了姿势相关的脑血流动力学和流体动力学变化。对10名健康志愿者(平均年龄29±7岁)进行了仰卧位和直立位(坐位)研究。采用电影相位对比MRI技术对流向大脑的搏动性血流、通过颈内静脉、硬膜外静脉和椎静脉的静脉流出以及颅骨和椎管之间的双向脑脊液流动进行成像。应用先前发表的分析方法来计算和比较两种姿势下的总脑血流量(TCBF)、颅内顺应性和压力。与仰卧位相比,直立位测量的平均TCBF较低(12%)。在坐位时,还测量到颅骨和椎管之间的脑脊液流量显著减少(58%),颅内顺应性显著增加(增加2.8倍),以及MRI衍生的颅内压相应降低。这些变化表明,直立姿势下脑血管和颅内顺应性增加主要是由于直立位时各自颅内腔室中的血液和脑脊液量减少。这项工作证明了能够从血液和脑脊液流动的动态MR成像中量化与脑血流动力学和流体动力学调节相关的神经生理参数。