视神经及其鞘的哪些区段与颅内压有关?一项探索性研究。

IF 2.3 4区 医学 Q3 CLINICAL NEUROLOGY
Jakob Pansell, Matteo Bottai, Max Bell, Peter C. Rudberg, Ola Friman, Charith Cooray
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引用次数: 0

摘要

背景和目的:视神经鞘直径(ONSD)是常用的颅内压(ICP)估算值。其原理是脑脊液中的压力变化会影响视神经蛛网膜下腔(ONSAS)的厚度。但是,对视神经鞘(ONS)其他部分可能产生的影响尚未进行研究。这是第一项分析视神经鞘所有可测量部分与 ICP 升高相关性的研究:我们测量了在卡罗林斯卡大学医院接受有创ICP监测治疗的75名患者的ICP变化和ONS分区的变化。用广义估计方程估计了ICP变化与ONS分区变化之间的关联。用接收者操作特征曲线下面积(AUROC)评估了与ICP变化相关的ONS分区识别ICP升高的潜力:结果:在多变量建模中,ONSAS和硬脑膜周围厚度均与ICP的变化显著相关。ONSAS 是唯一能独立预测 ICP 变化的分区,预测 ICP 升高的 AUROC 为 0.69。不过,在多变量建模中,视神经周围硬脑膜厚度和视神经直径在预测ICP变化方面仍有附加值:本研究的结果挑战了目前对 ICP 与 ONSD 之间关联机制的理解。与认为 ONSAS 是唯一受影响区室的普遍观点相反,本研究显示了更为复杂的情况。它表明,所有 ONS 区段都可能为预测 ICP 的变化增加价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Which compartments of the optic nerve and its sheath are associated with intracranial pressure? An exploratory study

Which compartments of the optic nerve and its sheath are associated with intracranial pressure? An exploratory study

Background and Purpose

The optic nerve sheath diameter (ONSD) is a commonly used estimate of intracranial pressure (ICP). The rationale behind this is that pressure changes in the cerebrospinal fluid affect the optic nerve subarachnoid space (ONSAS) thickness. Still, possible effects on other compartments of the optic nerve sheath (ONS) have not been studied. This is the first study ever to analyze all measurable compartments of the ONS for associations with elevated ICP.

Methods

We measured changes in ICP and changes in ONS compartments in 75 patients treated with invasive ICP monitoring at the Karolinska University Hospital. Associations between changes in ICP and changes in ONS compartments were estimated with generalized estimating equations. The potential to identify elevated ICP was assessed with the area under the receiver operating characteristic curve (AUROC) for ONS compartments associated with ICP changes.

Results

Both ONSAS and perioptic dura mater thickness were significantly associated with changes in ICP in multivariable modeling. ONSAS was the only compartment that independently predicted changes in ICP, with an AUROC of 0.69 for predicting ICP increase. Still, both the perioptic dura mater thickness and the optic nerve diameter added value in predicting ICP changes in multivariable modeling.

Conclusions

The results from this study challenge the current understanding of the mechanism behind the association between ICP and ONSD. Contrary to the common opinion that ONSAS is the only affected compartment, this study shows a more complex picture. It suggests that all ONS compartments may add value in predicting changes in ICP.

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来源期刊
Journal of Neuroimaging
Journal of Neuroimaging 医学-核医学
CiteScore
4.70
自引率
0.00%
发文量
117
审稿时长
6-12 weeks
期刊介绍: Start reading the Journal of Neuroimaging to learn the latest neurological imaging techniques. The peer-reviewed research is written in a practical clinical context, giving you the information you need on: MRI CT Carotid Ultrasound and TCD SPECT PET Endovascular Surgical Neuroradiology Functional MRI Xenon CT and other new and upcoming neuroscientific modalities.The Journal of Neuroimaging addresses the full spectrum of human nervous system disease, including stroke, neoplasia, degenerating and demyelinating disease, epilepsy, tumors, lesions, infectious disease, cerebral vascular arterial diseases, toxic-metabolic disease, psychoses, dementias, heredo-familial disease, and trauma.Offering original research, review articles, case reports, neuroimaging CPCs, and evaluations of instruments and technology relevant to the nervous system, the Journal of Neuroimaging focuses on useful clinical developments and applications, tested techniques and interpretations, patient care, diagnostics, and therapeutics. Start reading today!
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