Shahiri Mohammadali, Kasprzak Henryk, Asejczyk Magdalena
Department of Optics and Photonics, Wrocław University of Science and Technology, Wrocław, Poland.
Front Med (Lausanne). 2024 Dec 10;11:1484449. doi: 10.3389/fmed.2024.1484449. eCollection 2024.
The study examines the relationship between ocular rotations and cardiovascular functions through detailed biomechanical analysis. The study documents specific patterns of ocular movements and their synchronization with cardiovascular activity, highlighting significant correlations. These findings provide a basis for understanding the opto-biomechanical interplay between ocular and cardiovascular dynamics.
Authors employed a custom-designed prototype, integrating a camera and numerical pulse oximeter, to analyze the right eyeballs of participants. The corneal surface reflections were recorded, along with concurrent blood pulsation (BP) signal acquisition. Numerical analysis helped determine the reflection positions and orientations to study eye movements and corneal deformations. Time and frequency domain analyses, including coherence functions, were utilized.
Significant correlations were found between variations in corneal curvature, selected fixational eye movements (FEM) parameters, and Pulsatile ocular blood flow (POBF), revealing synchronized expansions of the corneal surfaces with cardiovascular activity. Furthermore, FEM displayed spectral correlations with BP, indicating an interrelation between ocular rotations and cardiovascular functions.
These findings reveal the complex interactions between the cornea and Pulsatile Ocular Blood Flow (POBF), as well as between Fixational Eye Movements (FEM) and POBF. While the influence of POBF on both corneal dynamics and FEM is clear, further research is necessary to directly link corneal dynamics and FEM. These insights hold potential for non-invasive diagnostic applications and provide a deeper understanding of ocular biomechanics.
本研究通过详细的生物力学分析,探究眼球转动与心血管功能之间的关系。该研究记录了眼球运动的特定模式及其与心血管活动的同步性,突出了显著的相关性。这些发现为理解眼球与心血管动力学之间的光学生物力学相互作用提供了基础。
作者采用了一个定制设计的原型,集成了摄像头和数字脉搏血氧仪,以分析参与者的右眼。记录角膜表面反射,同时采集血液搏动(BP)信号。数值分析有助于确定反射位置和方向,以研究眼球运动和角膜变形。利用了包括相干函数在内的时域和频域分析。
发现角膜曲率变化、选定的注视性眼球运动(FEM)参数与搏动性眼血流量(POBF)之间存在显著相关性,揭示了角膜表面与心血管活动的同步扩张。此外,FEM与BP显示出频谱相关性,表明眼球转动与心血管功能之间存在相互关系。
这些发现揭示了角膜与搏动性眼血流量(POBF)之间以及注视性眼球运动(FEM)与POBF之间的复杂相互作用。虽然POBF对角膜动力学和FEM的影响是明确的,但需要进一步研究以直接将角膜动力学和FEM联系起来。这些见解在无创诊断应用方面具有潜力,并为眼球生物力学提供了更深入的理解。