颅脊顺应性取决于容积输入的频率。

IF 2.3 4区 医学 Q3 BIOPHYSICS
Adam I Pelah, Magdalena Kasprowicz, Agnieszka Kazimierska, Ananya Chakravorty, Matthias Jaeger, Georgios Varsos, Marek Czosnyka, Zofia Czosnyka
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引用次数: 0

摘要

目的:颅脊柱顺应性是指在颅内容积变化的情况下保持稳定颅内压(ICP)的能力。颅脊髓顺应性可直接计算为颅内容积变化除以颅内压变化(ΔV/ΔICP)。考虑到ICP信号的不同频谱成分,探讨符合性是否取决于其计算的频率是相关的。方法:回顾性分析92例脑积水患者行计算机输液检查的资料。腰椎穿刺记录颅内压,经颅多普勒超声记录脑血流速度(CBFV)。依从性计算为ΔV/ΔICP,其中V为脑动脉血容量(CaBV),通过综合CBFV随时间的变化来估计。在三个ICP波频率:血管源性b波、呼吸性r波和脉动波中计算依从性。主要结果:依从性有显著差异(p
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Craniospinal compliance depends on the frequency of volume input.

Objective.Craniospinal compliance (CC) refers to the ability to maintain stable intracranial pressure (ICP) given changes in intracranial volume. CC can be calculated directly as the change in intracranial volume over change in ICP (ΔV/ΔICP). Considering the distinct spectral components of the ICP signal, it is pertinent to explore whether compliance is dependent on the frequency at which it is calculated.Approach.Data from 92 hydrocephalus patients who underwent computerized infusion studies was retrospectively analysed. ICP was recorded via lumbar puncture and cerebral blood flow velocity (CBFV) using transcranial Doppler ultrasonography. Compliance was calculated as ΔV/ΔICP, whereVis cerebral arterial blood volume (CaBV), estimated by integrating CBFV over time. Compliance was calculated across three ICP wave frequencies: vasogenicB-waves, respiratoryR-waves, and pulsatile waves.Main results.Compliances were significantly different (p< 0.001) across frequencies, and moderately correlated (r= 0.52 tor= 0.66), during baseline and plateau phases of the infusion study. Compliance decreased significantly from baseline to plateau (p< 0.001).B-wave CaBV amplitude was significantly higher than all other frequencies during both phases (p< 0.001), while pulsatile ICP amplitude was highest at baseline (p< 0.01), but tied withB-wave ICP amplitude during plateau (p= 0.10).Significance.The results support the notion that compliance is dependent on frequency, with higher compliances at slower frequencies. Where compliance is calculated in a clinical context, in hydrocephalus and traumatic brain injury, frequency should be considered for accurate results. Further research should explore this in a larger cohort, and in additional pathologies.

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来源期刊
Physiological measurement
Physiological measurement 生物-工程:生物医学
CiteScore
5.50
自引率
9.40%
发文量
124
审稿时长
3 months
期刊介绍: Physiological Measurement publishes papers about the quantitative assessment and visualization of physiological function in clinical research and practice, with an emphasis on the development of new methods of measurement and their validation. Papers are published on topics including: applied physiology in illness and health electrical bioimpedance, optical and acoustic measurement techniques advanced methods of time series and other data analysis biomedical and clinical engineering in-patient and ambulatory monitoring point-of-care technologies novel clinical measurements of cardiovascular, neurological, and musculoskeletal systems. measurements in molecular, cellular and organ physiology and electrophysiology physiological modeling and simulation novel biomedical sensors, instruments, devices and systems measurement standards and guidelines.
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