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为何颅内顺应性未被用作临床实践中的常用实用工具。

Why Intracranial Compliance Is Not Utilized as a Common Practical Tool in Clinical Practice.

作者信息

Gholampour Seifollah

机构信息

Department of Neurological Surgery, University of Chicago, Chicago, IL 60637, USA.

出版信息

Biomedicines. 2023 Nov 17;11(11):3083. doi: 10.3390/biomedicines11113083.

Abstract

Intracranial compliance (ICC) holds significant potential in neuromonitoring, serving as a diagnostic tool and contributing to the evaluation of treatment outcomes. Despite its comprehensive concept, which allows consideration of changes in both volume and intracranial pressure (ICP), ICC monitoring has not yet established itself as a standard component of medical care, unlike ICP monitoring. This review highlighted that the first challenge is the assessment of ICC values, because of the invasive nature of direct , the time-consuming aspect of non-invasive through computer simulations, and the inability to quantify ICC values in methods. Addressing these challenges is crucial, and the development of a rapid, non-invasive computer simulation method could alleviate obstacles in quantifying ICC. Additionally, this review indicated the second challenge in the clinical application of ICC, which involves the dynamic and time-dependent nature of ICC. This was considered by introducing the concept of time elapsed (TE) in measuring the in volume or ICP in the ICC equation (volume change/ICP change). The choice of TE, whether short or long, directly influences the ICC values that must be considered in the clinical application of the ICC. Compensatory responses of the brain exhibit non-monotonic and variable changes in long TE assessments for certain disorders, contrasting with the mono-exponential pattern observed in short TE assessments. Furthermore, the recovery behavior of the brain undergoes changes during the treatment process of various brain disorders when exposed to short and long TE conditions. The review also highlighted differences in ICC values across brain disorders with various strain rates and loading durations on the brain, further emphasizing the dynamic nature of ICC for clinical application. The insight provided in this review may prove valuable to professionals in neurocritical care, neurology, and neurosurgery for standardizing ICC monitoring in practical application related to the diagnosis and evaluation of treatment outcomes in brain disorders.

摘要

颅内顺应性(ICC)在神经监测中具有巨大潜力,可作为一种诊断工具,并有助于评估治疗效果。尽管其概念全面,允许考虑容积和颅内压(ICP)的变化,但与ICP监测不同,ICC监测尚未成为医疗护理的标准组成部分。本综述强调,第一个挑战是ICC值的评估,这是由于直接测量具有侵入性,通过计算机模拟进行非侵入性测量耗时,以及在某些方法中无法量化ICC值。应对这些挑战至关重要,开发一种快速、非侵入性的计算机模拟方法可以减轻量化ICC的障碍。此外,本综述指出了ICC临床应用中的第二个挑战,即ICC具有动态和时间依赖性。通过在ICC方程(容积变化/ICP变化)中测量容积或ICP时引入时间流逝(TE)的概念来考虑这一点。TE的选择,无论是短还是长,都直接影响在ICC临床应用中必须考虑的ICC值。对于某些疾病,在长时间TE评估中,大脑的代偿反应表现出非单调和可变的变化,这与短时间TE评估中观察到的单指数模式形成对比。此外,在各种脑部疾病的治疗过程中,当暴露于短时间和长时间TE条件下时,大脑的恢复行为会发生变化。该综述还强调了不同脑部疾病在不同应变率和大脑加载持续时间下ICC值的差异,进一步强调了ICC在临床应用中的动态性质。本综述提供的见解可能对神经重症监护、神经病学和神经外科领域的专业人员在与脑部疾病诊断和治疗效果评估相关的实际应用中标准化ICC监测具有重要价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/77e3/10669292/681a7a96aff1/biomedicines-11-03083-g001.jpg

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