Department of Medical and Technical Information Technology, Bauman Moscow State Technical University, 105005 Moscow, Russia.
Department of Informatics and Applied Mathematics, ITMO University, 197101 St. Petersburg, Russia.
Sensors (Basel). 2021 Dec 26;22(1):138. doi: 10.3390/s22010138.
Vascular tone plays a vital role in regulating blood pressure and coronary circulation, and it determines the peripheral vascular resistance. Vascular tone is dually regulated by the perivascular nerves and the cells in the inside lining of blood vessels (endothelial cells). Only a few methods for measuring vascular tone are available. Because of this, determining vascular tone in different arteries of the human body and monitoring tone changes is a vital challenge. This work presents an approach for determining vascular tone in human extremities based on multi-channel bioimpedance measurements. Detailed steps for processing the bioimpedance signals and extracting the main parameters from them have been presented. A graphical interface has been designed and implemented to display the vascular tone type in all channels with the phase of breathing during each cardiac cycle. This study is a key step towards understanding the way vascular tone changes in the extremities and how the nervous system regulates these changes. Future studies based on records of healthy and diseased people will contribute to increasing the possibility of early diagnosis of cardiovascular diseases.
血管张力在调节血压和冠状动脉循环中起着至关重要的作用,它决定了外周血管阻力。血管张力由血管周围神经和血管内细胞(内皮细胞)双重调节。目前只有少数几种测量血管张力的方法。因此,确定人体不同动脉的血管张力并监测张力变化是一个极具挑战性的问题。本工作提出了一种基于多通道生物阻抗测量的人体四肢血管张力测定方法。介绍了处理生物阻抗信号并从中提取主要参数的详细步骤。设计并实现了一个图形界面,用于显示每个心动周期呼吸相位下所有通道的血管张力类型。这项研究是理解四肢血管张力变化方式以及神经系统如何调节这些变化的关键步骤。基于健康人和患者记录的进一步研究将有助于提高心血管疾病早期诊断的可能性。