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体位变化对非侵入性颅内脉搏波的影响。

The effect of body position change on noninvasively acquired intracranial pulse waves.

机构信息

The Interface Group, Institute of Physiology, University of Zurich, Zurich, Switzerland.

Foundation for Research on Information Technologies in Society (IT'IS), Zurich, Switzerland.

出版信息

Physiol Meas. 2023 Apr 3;44(3). doi: 10.1088/1361-6579/acc3d6.

Abstract

. Craniospinal compliance (CC) is an important metric for the characterization of space-occupying neurological pathologies. CC is obtained using invasive procedures that carry risks for the patients. Therefore, noninvasive methods for acquiring surrogates of CC have been proposed, most recently based on changes in the head's dielectric properties during the cardiac cycle. Here, we have tested whether changes in body position, which are known to influence CC, are reflected in a capacitively acquired signal (hereinafter referred to as W) originating from dynamic changes of the head's dielectric properties.. eighteen young healthy volunteers were included in the study. After 10 min in supine position, subjects were tilted head-up (HUT), back to 0° (horizontal, control), and then head-down (HDT). Metrics related to cardiovascular action were extracted from W, including AMP, the peak-to-valley amplitude of the cardiac modulation of W. Computational electromagnetic simulations were performed to probe the association between intracranial volume change and W.. AMP decreased during HUT (0°: 2869 ± 597 arbitrary units (au); +75°: 2307 ± 490 au,= 0.002) and increased during HDT (-30°: 4403 ± 1428 au,< 0.0001). The same behavior was predicted by the electromagnetic model.. tilting affects the distribution of CC between cranial and spinal compartments. Cardiovascular action induces compliance-dependent oscillatory changes in the intracranial fluid composition, which causes corresponding variations in the head's dielectric properties. These manifest as increasing AMP with decreasing intracranial compliance, which suggests that W may contain information related to CC, and that it might be possible to derive CC surrogates therefrom.

摘要

. 颅脊柱顺应性(CC)是描述占位性神经病变的重要指标。CC 通过有创程序获得,这些程序对患者有风险。因此,已经提出了用于获取 CC 替代物的非侵入性方法,最近的方法是基于心脏周期期间头部介电特性的变化。在这里,我们已经测试了体位变化是否会影响 CC,而这些变化会反映在电容获取的信号(以下简称 W)中,该信号源自头部介电特性的动态变化。. 研究纳入了 18 名年轻健康志愿者。在仰卧位 10 分钟后,受试者被头高脚低位倾斜(HUT),然后回到 0°(水平,对照),然后头低位(HDT)。从 W 中提取与心血管作用相关的指标,包括 AMP,W 的心脏调制的峰值到谷值幅度。进行了计算电磁模拟,以探究颅内体积变化与 W 之间的关联。. 在 HUT 期间,AMP 降低(0°:2869 ± 597 任意单位(au);+75°:2307 ± 490 au,= 0.002),在 HDT 期间增加(-30°:4403 ± 1428 au,< 0.0001)。电磁模型预测了相同的行为。. 倾斜会影响颅腔和椎管之间的 CC 分布。心血管作用会引起颅内液成分顺应性依赖的振荡变化,这会导致头部介电特性相应变化。这些表现为颅内顺应性降低时 AMP 增加,这表明 W 可能包含与 CC 相关的信息,并且可能从中得出 CC 替代物。

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