LabTAU, INSERM, Centre Léon Bérard, Université Lyon 1, Univ Lyon, F-69003, Lyon, France.
Institute of Biomedical Optics, University of Lübeck, Peter-Monnik-Weg 4, 23562 Lübeck, Germany.
Sci Adv. 2023 Jun 23;9(25):eadf1783. doi: 10.1126/sciadv.adf1783. Epub 2023 Jun 21.
The risk of cardiovascular events is linked to arterial elasticity that can be estimated from the pulse wave velocity. This symmetric wave velocity is related to the wall elasticity through the Moens-Korteweg equation. However, ultrasound imaging techniques need improved accuracy, and optical measurements on retinal arteries produce inconsistent results. Here, we report the first observation of an antisymmetric pulse wave: the flexural pulse wave. An optical system performs in vivo wave velocity measurements on retinal arteries and veins. Velocity estimation ranges between 1 and 10 millimeter per second. The theory of guided waves confirms the existence of this wave mode and its low velocity. Natural flexural waves can also be detected at the bigger scale of a carotid artery using ultrafast ultrasound imaging. This second natural pulse wave has great potential of becoming a biomarker of blood vessel aging.
心血管事件的风险与动脉弹性有关,而动脉弹性可以通过脉搏波速度来估计。这种对称波速度通过 Moens-Korteweg 方程与壁弹性相关。然而,超声成像技术需要提高准确性,而视网膜动脉的光学测量结果则不一致。在这里,我们报告了第一个观察到的非对称脉搏波:挠曲波。光学系统对视网膜动静脉进行体内波速度测量。速度估计范围在 1 到 10 毫米每秒之间。导波理论证实了这种波模式及其低速度的存在。使用超快超声成像,也可以在颈动脉的较大尺度上检测到自然挠曲波。这种第二自然脉搏波有可能成为血管老化的生物标志物。