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I型Chiari畸形中的脑脊液流体动力学

Cerebrospinal fluid hydrodynamics in type I Chiari malformation.

作者信息

Shaffer Nicholas, Martin Bryn, Loth Francis

机构信息

Department of Mechanical Engineering, University of Akron, OH 44325-3903, USA.

出版信息

Neurol Res. 2011 Apr;33(3):247-60. doi: 10.1179/016164111X12962202723805.

Abstract

PURPOSE

The objective of this study was to review past studies that have used engineering analysis to examine cerebrospinal fluid hydrodynamics in cranial and spinal subarachnoid spaces in both healthy humans and those affected by type I Chiari malformation.

METHODS

A PubMed search of literature pertaining to cerebrospinal fluid hydrodynamics was performed with a particular focus on those that utilized methods such as computational fluid dynamics or experimental flow modeling.

DISCUSSION

From the engineer's perspective, type I Chiari malformation is an abnormal geometry of the cerebellum that causes increased resistance to cerebrospinal fluid flow between the intracranial and spinal subarachnoid space. As such, understanding the hydrodynamics of cerebrospinal fluid in the craniospinal subarachnoid space has long been thought to be important in the diagnosis and management of type I Chiari malformation. Hydrodynamic quantification of cerebrospinal fluid motion in the subarachnoid space may better reflect the pathophysiology of the disorder and serve as a prognostic indicator in conjunction with geometric magnetic resonance measurements that are currently used clinically. This review discusses the results of studies that have sought to quantify the hydrodynamics of cerebrospinal fluid motion using computational and experimental modeling and critiques the methods by which the results were obtained.

CONCLUSION

Researchers have found differences in cerebrospinal fluid velocities and pressures in type I Chiari malformation patients compared to healthy subjects. However, further research is necessary to determine the causal relationship between changes to hydrodynamic parameters such as cerebrospinal fluid velocity, pressure, resistance to flow, and craniospinal compliance and clinical aspects such as neurological symptoms, radiological evidence of severity, and surgical success.

摘要

目的

本研究的目的是回顾过去使用工程分析来研究健康人和I型Chiari畸形患者颅脊髓蛛网膜下腔脑脊液流体动力学的研究。

方法

对与脑脊液流体动力学相关的文献进行PubMed检索,特别关注那些使用计算流体动力学或实验流动建模等方法的研究。

讨论

从工程师的角度来看,I型Chiari畸形是小脑的异常几何形状,会导致颅内和脊髓蛛网膜下腔之间脑脊液流动的阻力增加。因此,长期以来人们一直认为了解颅脊髓蛛网膜下腔脑脊液的流体动力学在I型Chiari畸形的诊断和管理中很重要。蛛网膜下腔脑脊液运动的流体动力学量化可能更好地反映该疾病的病理生理学,并与目前临床使用的几何磁共振测量一起作为预后指标。本综述讨论了试图使用计算和实验建模来量化脑脊液运动流体动力学的研究结果,并对获得结果的方法进行了批判。

结论

研究人员发现,与健康受试者相比,I型Chiari畸形患者的脑脊液速度和压力存在差异。然而,有必要进一步研究以确定流体动力学参数(如脑脊液速度、压力、流动阻力和颅脊髓顺应性)的变化与神经症状、严重程度的影像学证据和手术成功率等临床方面之间的因果关系。

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