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基于肌源性微循环振荡对微血管低氧适应的预测

Prediction of Microvascular Adaptation to Hypoxia Based on Myogenic Microcirculation Oscillations.

作者信息

Marcinek Andrzej, Katarzynska Joanna, Stanek Artur, Gebicki Jerzy

机构信息

Institute of Applied Radiation Chemistry, Lodz University of Technology, 90-924 Lodz, Poland.

Angionica Ltd., 90-924 Lodz, Poland.

出版信息

Sensors (Basel). 2025 Apr 26;25(9):2751. doi: 10.3390/s25092751.

Abstract

Microcirculatory oscillations known as flowmotion are a recognized feature of blood flow that reflect the functional state of the vascular system. Many diseases are associated with impaired flowmotion, especially diseases that are accompanied by hypoxia. Low-frequency myogenic oscillations (0.052-0.15 Hz) are an important regulator of microvascular adaptation to hypoxia. Here, we study the myogenic component of flowmotion using the FMSF-PORH (Flow Mediated Skin Fluorescence-Post Occlusive Reactive Hyperemia) technique. Myogenic oscillations were strongly activated under hypoxic conditions caused by occlusion of the brachial artery or intermittent hypoxic treatment. A strong correlation was noted between the hypoxia sensitivity parameter HS (the intensity of myogenic oscillations activated by hypoxia) and the normoxic myogenic flowmotion parameter VM (the intensity of myogenic oscillations under normoxic conditions). If HS is considered as a direct measure of the microcirculation response to hypoxia, then VM can be considered a measure of the microcirculation's readiness to provide this response. The predictive value of the VM parameter is presented. The assessment of myogenic activity under normoxia conditions could thus provide a simple and rapid diagnostic tool for health care practitioners.

摘要

被称为血流运动的微循环振荡是血流的一个公认特征,反映了血管系统的功能状态。许多疾病都与血流运动受损有关,尤其是伴有缺氧的疾病。低频肌源性振荡(0.052 - 0.15赫兹)是微血管对缺氧适应的重要调节因子。在此,我们使用FMSF - PORH(血流介导的皮肤荧光 - 闭塞后反应性充血)技术研究血流运动的肌源性成分。在肱动脉闭塞或间歇性低氧治疗引起的低氧条件下,肌源性振荡被强烈激活。在低氧敏感性参数HS(由低氧激活的肌源性振荡强度)和常氧肌源性血流运动参数VM(常氧条件下肌源性振荡强度)之间发现了很强的相关性。如果将HS视为微循环对低氧反应的直接测量指标,那么VM可被视为微循环准备提供这种反应的一种测量指标。给出了VM参数的预测价值。因此,对常氧条件下肌源性活动的评估可为医护人员提供一种简单快速的诊断工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d444/12074523/fd4653f8e61b/sensors-25-02751-g001.jpg

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