Tain Rong-Wen, Ertl-Wagner Birgit, Alperin Noam
Department of Radiology, University of Miami, Miami, Florida 33136, USA.
J Magn Reson Imaging. 2009 Oct;30(4):878-83. doi: 10.1002/jmri.21925.
To assess the influence of arterial and venous vascular compliances in the neck region on the measurement of the change in intracranial volume during the cardiac cycle.
Arterial and venous blood flows were imaged by MRI phase contrast at two different locations, one close to the skull base (upper) and one 2-3 cm lower, around C3 level (lower). Maximal intracranial volume change (ICVC) measurements were derived from the momentary difference between the arterial inflow and venous outflow rates at the upper and lower locations separately to assess the influence of the compliances of the vessel segments bounded by the two different imaging locations. Imaging location for the craniospinal cerebrospinal fluid flow was a constant variable in this experiment.
The systolic ICVC obtained using the lower location was consistently larger than when using the upper location. Comparison between arterial and venous flow dynamics revealed a much larger changes in flow dynamic and lumen areas in the veins compared with the arteries, which explain the large venous influence on the intracranial volume change measurement.
Arterial inflow and venous outflow should be sampled at a level close to the skull base (C1-C2) to minimize the influence of the compliance of arteries and the collapsibility of veins for a reliable measurement of ICVC.
评估颈部区域动脉和静脉血管顺应性对心动周期期间颅内体积变化测量的影响。
通过MRI相位对比成像在两个不同位置对动脉和静脉血流进行成像,一个位置靠近颅底(上部),另一个位置在C3水平下方2 - 3厘米处(下部)。分别从上部和下部位置的动脉流入率和静脉流出率的瞬间差异得出最大颅内体积变化(ICVC)测量值,以评估由两个不同成像位置界定的血管段顺应性的影响。在本实验中,颅脊脑脊液流动的成像位置是一个恒定变量。
使用下部位置获得的收缩期ICVC始终大于使用上部位置时的值。动脉和静脉血流动力学的比较显示,与动脉相比,静脉中的血流动力学和管腔面积变化要大得多,这解释了静脉对颅内体积变化测量的巨大影响。
应在靠近颅底(C1 - C2)的水平采集动脉流入和静脉流出数据,以最小化动脉顺应性和静脉可塌陷性的影响,从而可靠地测量ICVC。