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首页> 外文期刊>Cerebrospinal Fluid Research >Is posture-related craniospinal compliance shift caused by jugular vein collapse? A theoretical analysis
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Is posture-related craniospinal compliance shift caused by jugular vein collapse? A theoretical analysis

机译:颈椎静脉塌陷引起与姿势相关的颅骨顺应性转变吗?理论分析

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Background Postural changes are related to changes in cerebrospinal fluid (CSF) dynamics. While sitting up leads to a decrease in cranial CSF pressure, it also causes shifts in the craniospinal CSF volume and compliance distribution. We hypothesized that jugular vein collapse in upright posture is a major contributor to these shifts in CSF volume and compliance. Methods To test this hypothesis, we implemented a mathematical lumped-parameter model of the CSF system and the relevant parts of the cardiovascular system. In this model, the CSF and the venous system are each divided into a cranial and a spinal part. The pressures in these cranial and spinal portions differ by the posture-dependent hydrostatic pressure columns in the connecting vessels. Jugular collapse is represented by a reduction of the hydrostatic pressure difference between cranial and spinal veins. The CSF pressure–volume relationship is implemented as a function of the local CSF to venous pressure gradient. This implies that an increase in CSF volume leads to a simultaneous displacement of blood from adjacent veins. CSF pulsations driven by the cardiovascular system are introduced through a pulsating cranial arterial volume. Results In upright posture, the implemented CSF pressure–volume relationship shifts to lower cranial CSF pressures compared to the horizontal position, leading to a decrease in cranial CSF pressure when sitting up. Concurrently, the compliance of the spinal compartment decreases while the one of the cranial compartment increases. With this, in upright posture only 10% of the CSF system’s compliance is provided by the spinal compartment compared to 35% in horizontal posture. This reduction in spinal compliance is accompanied by a caudal shift of CSF volume. Also, the ability of the spinal CSF compartment to compensate for cerebral arterial volume pulsations reduces in upright posture, which in turn reduces the calculated craniospinal CSF flow pulsations. Conclusion The mathematical model enabled us to isolate the effect of jugular collapse and quantify the induced shifts of compliance and CSF volume. The good concordance of the modelled changes with clinically observed values indicates that jugular collapse can be considered a major contributor to CSF dynamics in upright posture.
机译:背景姿势变化与脑脊液(CSF)动态变化有关。坐立导致颅脑CSF压力降低,但同时也会导致颅骨CSF体积和顺应性分布发生变化。我们假设以直立姿势的颈静脉塌陷是导致CSF量和顺应性变化的主要因素。方法为了检验该假设,我们实现了CSF系统和心血管系统相关部分的数学集总参数模型。在该模型中,脑脊液和静脉系统分别分为颅骨部分和脊柱部分。这些颅骨和脊柱部分的压力因连接血管中与姿势有关的静水压力柱而异。颈静脉塌陷表现为颅静脉和脊髓静脉之间的静水压差减小。 CSF压力与体积的关系是根据局部CSF与静脉压力梯度的函数实现的。这意味着脑脊液体积的增加会导致相邻静脉的血液同时移位。由心血管系统驱动的CSF搏动通过搏动的颅动脉容积引入。结果在直立姿势下,与水平位置相比,已实现的CSF压力-体积关系向较低的颅CSF压力转移,导致坐姿时颅CSF压力降低。同时,脊髓腔室的顺应性降低而颅腔室之一的顺应性增加。这样一来,在直立姿势下,脊柱腔室仅提供10%的CSF系统顺应性,而在水平姿势下,则为35%。脊柱顺应性的降低伴随着CSF体积的尾移。同样,脊柱CSF隔室补偿脑动脉容积搏动的能力在直立姿势下也会降低,这反过来又会减少计算出的颅脊CSF流量搏动。结论数学模型使我们能够分离出颈静脉塌陷的影响,并量化顺应性和CSF量的诱发变化。建模变化与临床观察值的良好一致性表明,颈椎塌陷可以被认为是直立姿势下脑脊液动力学的主要因素。

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