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Comparison of 4D Phase-Contrast MRI Flow Measurements to Computational Fluid Dynamics Simulations of Cerebrospinal Fluid Motion in the Cervical Spine

机译:比较4D相衬MRI流量测量与颈椎中脑脊液运动的计算流体动力学模拟

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摘要

Cerebrospinal fluid (CSF) dynamics in the cervical spinal subarachnoid space (SSS) have been thought to be important to help diagnose and assess craniospinal disorders such as Chiari I malformation (CM). In this study we obtained time-resolved three directional velocity encoded phase-contrast MRI (4D PC MRI) in three healthy volunteers and four CM patients and compared the 4D PC MRI measurements to subject-specific 3D computational fluid dynamics (CFD) simulations. The CFD simulations considered the geometry to be rigid-walled and did not include small anatomical structures such as nerve roots, denticulate ligaments and arachnoid trabeculae. Results were compared at nine axial planes along the cervical SSS in terms of peak CSF velocities in both the cranial and caudal direction and visual interpretation of thru-plane velocity profiles. 4D PC MRI peak CSF velocities were consistently greater than the CFD peak velocities and these differences were more pronounced in CM patients than in healthy subjects. In the upper cervical SSS of CM patients the 4D PC MRI quantified stronger fluid jets than the CFD. Visual interpretation of the 4D PC MRI thru-plane velocity profiles showed greater pulsatile movement of CSF in the anterior SSS in comparison to the posterior and reduction in local CSF velocities near nerve roots. CFD velocity profiles were relatively uniform around the spinal cord for all subjects. This study represents the first comparison of 4D PC MRI measurements to CFD of CSF flow in the cervical SSS. The results highlight the utility of 4D PC MRI for evaluation of complex CSF dynamics and the need for improvement of CFD methodology. Future studies are needed to investigate whether integration of fine anatomical structures and gross motion of the brain and/or spinal cord into the computational model will lead to a better agreement between the two techniques.
机译:人们认为,颈脊髓蛛网膜下腔(SSS)中的脑脊液(CSF)动态对于帮助诊断和评估诸如Chiari I畸形(CM)之类的颅脑疾病很重要。在这项研究中,我们在三名健康志愿者和四名CM患者中获得了时间分辨的三方向速度编码相衬MRI(4D PC MRI),并将4D PC MRI测量结果与特定于受试者的3D计算流体动力学(CFD)模拟进行了比较。 CFD模拟认为该几何结构是刚性壁,并且不包括小的解剖结构,例如神经根,细齿韧带和蛛网膜小梁。比较了沿颈SSS的9个轴向平面在颅和尾方向的峰值CSF速度以及通过平面速度分布的视觉解释的结果。 4D PC MRI峰值CSF速度始终大于CFD峰值速度,与健康受试者相比,CM患者的这些差异更为明显。在CM患者的上颈SSS中,4D PC MRI量化的流体喷射比CFD强。视觉解释4D PC MRI穿过平面的速度曲线显示,与后方相比,前部SSS中CSF的脉动性更大,并且神经根附近的局部CSF速度降低。对于所有受试者,CFD速度分布在脊髓周围相对均匀。这项研究代表了4D PC MRI测量与宫颈SSS中CSF流量CFD的首次比较。结果强调了4D PC MRI在评估复杂的CSF动力学方面的实用性,并且需要改进CFD方法。需要进行进一步的研究来研究将精细的解剖结构以及大脑和/或脊髓的总体运动整合到计算模型中是否会导致两种技术之间的更好的一致性。

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