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A computational model of the cerebrospinal fluid system incorporating lumped-parameter cranial compartment and one-dimensional distributed spinal compartment

机译:集结参数颅腔和一维分布式脊柱腔的脑脊液系统的计算模型

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The dynamic transmission of pressure through the cerebro-circulatory system may play a role in the genesis of pathological conditions of the brain and spinal cord. This study aims to lay down the foundations for computer modelling of the cerebrospinal (CSF) pressure dynamics in the cranio-spinal cavity as a single entity. The cerebro-vascular system was modelled as a set of resistors and capacitors. The model of the CSF space comprised a lumped cranial compartment and a distributed spinal compartment. Apart from simulating normal (baseline) conditions, the effects of jugular vein compression, and thoracic pressure elevation by coughing were investigated by applying pressure waveforms at the appropriate points in the model. The Chiari malformation was simulated by assigning high resistance to the circulation of the CSF between the cranium and the spine. The model was capable of reproducing physiologically plausible results for all forms of excitation. The spinal cavity behaved effectively as a lumped compartment, except for the cough excitation where wave-type behaviour was evident. In that case, the Chiari obstruction resulted in prolonged periodic straining of the spinal cord. This result can be of significance for understanding the mechanism of the formation of cysts in the spinal cord.
机译:通过脑循环系统的动态压力传递可能在大脑和脊髓病理状况的发生中起作用。这项研究的目的是为颅骨腔内作为单个实体的脑脊髓(CSF)压力动力学计算机建模奠定基础。脑血管系统被建模为一组电阻器和电容器。 CSF空间的模型包括一个集总的颅骨隔室和一个分布的脊椎隔室。除了模拟正常(基准)条件外,还通过在模型的适当点施加压力波形来研究颈静脉压缩和咳嗽引起的胸腔压力升高的影响。通过给颅骨和脊柱之间的脑脊液循环分配高阻力来模拟Chiari畸形。该模型能够为所有形式的激发产生生理上合理的结果。脊髓腔有效地表现为集总隔室,除了咳嗽兴奋性明显表现为波型行为外。在那种情况下,Chiari梗阻导致脊髓周期性周期性拉长。该结果对于理解脊髓中囊肿形成的机制可能具有重要意义。

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