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可定制的硅胶容器和组织模型用于心血管疾病的体外光体积描记法研究。

Customisable Silicone Vessels and Tissue Phantoms for In Vitro Photoplethysmography Investigations into Cardiovascular Disease.

机构信息

Research Centre for Biomedical Engineering, City, University of London, London EC1V 0HB, UK.

出版信息

Sensors (Basel). 2024 Mar 5;24(5):1681. doi: 10.3390/s24051681.

Abstract

Age-related vessel deterioration leads to changes in the structure and function of the heart and blood vessels, notably stiffening of vessel walls, increasing the risk of developing cardiovascular disease (CVD), which accounts for 17.9 million global deaths annually. This study describes the fabrication of custom-made silicon vessels with varying mechanical properties (arterial stiffness). The primary objective of this study was to explore how changes in silicone formulations influenced vessel properties and their correlation with features extracted from signals obtained from photoplethysmography (PPG) reflectance sensors in an in vitro setting. Through alterations in the silicone formulations, it was found that it is possible to create elastomers exhibiting an elasticity range of 0.2 MPa to 1.22 MPa. It was observed that altering vessel elasticity significantly impacted PPG signal morphology, particularly reducing amplitude with increasing vessel stiffness ( < 0.001). A -value of 5.176 × 10 and 1.831 × 10 was reported in the red and infrared signals, respectively. It has been concluded in this study that a femoral artery can be recreated using the silicone material, with the addition of a softener to achieve the required mechanical properties. This research lays the foundation for future studies to replicate healthy and unhealthy vascular systems. Additional pathologies can be introduced by carefully adjusting the elastomer materials or incorporating geometrical features consistent with various CVDs.

摘要

与年龄相关的血管恶化导致心脏和血管的结构和功能发生变化,特别是血管壁变硬,增加了患心血管疾病(CVD)的风险,每年有 1790 万人因此死亡。本研究描述了具有不同机械性能(动脉僵硬)的定制硅血管的制造。本研究的主要目的是探讨硅酮配方的变化如何影响血管特性及其与体外获得的光体积描记(PPG)反射传感器信号中提取的特征之间的相关性。通过改变硅酮配方,发现可以制造出弹性范围为 0.2 MPa 至 1.22 MPa 的弹性体。研究发现,改变血管弹性会显著影响 PPG 信号形态,特别是随着血管硬度的增加,信号幅度会降低(<0.001)。红色和红外信号的 A 值分别为 5.176×10 和 1.831×10。本研究得出结论,可以使用硅酮材料加上增塑剂来重现股动脉,并达到所需的机械性能。这项研究为未来研究复制健康和不健康的血管系统奠定了基础。通过仔细调整弹性体材料或纳入与各种 CVD 一致的几何特征,可以引入其他病理。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d08/10933982/8647fd69c8e7/sensors-24-01681-g001.jpg

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