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Modeling and experimental study of the intervention forces between the guidewire and blood vessels

干预(咨询) 血流 医学 接触力 血管 生物医学工程 外科 模拟 计算机科学 心脏病学 物理 内科学 量子力学 精神科
作者
Pan Li,Jing Feng,Xue Zhang,Delei Fang,Junxia Zhang,Cunman Liang
出处
期刊:Medical Engineering & Physics [Elsevier BV]
卷期号:127 (1): 104166-104166 被引量:8
标识
DOI:10.1016/j.medengphy.2024.104166
摘要

A profound investigation of the interaction mechanics between blood vessels and guidewires is necessary to achieve safe intervention. An interactive force model between guidewires and blood vessels is established based on cardiovascular fluid dynamics theory and contact mechanics, considering two intervention phases (straight intervention and contact intervention at a corner named “J-vessel”). The contributing factors of the force model, including intervention conditions, guidewire characteristics, and intravascular environment, are analyzed. A series of experiments were performed to validate the availability of the interactive force model and explore the effects of influential factors on intervention force. The intervention force data were collected using a 2-DOF mechanical testing system instrumented with a force sensor. The guidewire diameter and material were found to significantly impact the intervention force. Additionally, the intervention force was influenced by factors such as blood viscosity, blood vessel wall thickness, blood flow velocity, as well as the interventional velocity and interventional mode. The experiment of the intervention in a coronary artery physical vascular model confirms the practicality validation of the predicted force model and can provide an optimized interventional strategy for vascular interventional surgery. The enhanced intervention strategy has resulted in a considerable reduction of approximately 21.97% in the force exerted on blood vessels, effectively minimizing the potential for complications associated with the interventional surgery.
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