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HYDRODYNAMICS OF CEREBROSPINAL FLUID IN SPINAL CANAL WITH CHIARI MALFORMATION AND SYRINGOMYELIA

机译:Chiari畸形脊柱管道脑脊髓液的流体动力学

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Magnetic resonance imaging (MRI) is has great potential as a tool for diagnosis of neurological diseases such as Chiari malformation (CM) and syringomyelia (SM). Its extended capability to obtain in-vivo velocities of blood or cerebrospinal fluid (CSF) allowed engineers to perform studies with engineering analysis applications such as computational fluid dynamics and physical modeling. Recently, a new MR technique called balanced steady-state free procession (bSSFP) cine imaging was developed for analysis of geometrical changes during the cardiac cycle due to compliance [1]. This study used MRI utilities to investigate hydrodynamic environment of CSF in the sub-cranial subarachnoid space (SAS). A model was constructed to simulate fluid dynamics of CSF in SAS. This model will allow investigation of detailed pressure and velocity using laser Doppler anemometry and pressure transducers. The MRI data from patient, healthy volunteers, the flow model were compared.
机译:磁共振成像(MRI)具有巨大的潜力作为诊断神经系统疾病(如Chiari畸形(CM)和掺量肾上腺素(SM)的工具。其延长的能力,以获得血液或脑脊液(CSF)的体内速度(CSF)允许工程师进行工程分析应用的研究,例如计算流体动力学和物理建模。最近,开发了一种称为平衡稳态自由游行(BSSFP)的新MR技术,用于分析由于顺应性而在心周期期间的几何变化[1]。该研究使用MRI公用事业研究了亚颅骨蛛网膜下腔(SAS)中CSF的流体动力环境。构建模型以模拟SAS中CSF的流体动力学。该模型将允许使用激光多普勒风速和压力传感器来研究详细的压力和速度。比较了来自患者,健康志愿者的MRI数据,比较了流动模型。

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