Impact of lower limb movements on iliac vein stenting in iliac vein compression syndrome patients: insights from computational modeling.

Acta of bioengineering and biomechanics Pub Date : 2024-04-15 Print Date: 2024-06-01 DOI:10.37190/abb-02397-2024-04
Jian Lu, Zhenmin Fan, Xia Ye, Xiaoyan Deng, Hai Feng, Mingyuan Liu
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Abstract

Purpose: Iliac vein stenting is the primary treatment for patients with iliac vein compression syndrome (IVCS). However, post-stent placement, patients often experience in-stent restenosis and thrombosis. Despite this, the role of lower limb movements in the functioning of stents and veins in IVCS patients remains unclear. This study aimed to address this knowledge gap by developing a computational model using medical imaging techniques to simulate IVCS after stent placement. Methods: This research used a patient-specific model to analyze the effects of lower extremity exercises on hemodynamics post-stent placement. We conducted a comprehensive analysis to evaluate the impact of specific lower limb movements, including hip flexion, ankle movement and pneumatic compression on the hemo-dynamic characteristics within the treated vein. The analysis assessed parameters such as wall shear stress (WSS), oscillatory shear index (OSI), and residence time (RRT). Results: The results demonstrated that hip flexion significantly disrupts blood flow dynamics at the iliac vein bifurcation after stenting. Bilateral and left hip flexion were associated with pronounced regions of low WSS and high OSI at the iliac-vena junction and the stent segment. Additionally, active ankle exercise (AAE) and intermittent pump compression (IPC) therapy were found to enhance the occurrence of low WSS regions along the venous wall, potentially reducing the risk of thrombosis post-stent placement. Consequently, both active joint movements (hip and ankle) and passive movements have the potential to influence the local blood flow environment within the iliac vein after stenting. Conclusions: The exploration of the impact of lower limb movements on hemodynamics provides valuable insights for mitigating adverse effects associated with lower limb movements post iliac-stenting. Bilateral and left hip flexions negatively impacted blood flow, increasing thrombosis risk. However, active ankle exercise and intermittent pump compression therapies effectively improve the patency.

下肢运动对髂静脉压迫综合征患者髂静脉支架植入术的影响:计算建模的启示。
目的:髂静脉支架植入术是治疗髂静脉压迫综合征(IVCS)患者的主要方法。然而,支架置入后,患者往往会出现支架内再狭窄和血栓形成。尽管如此,下肢运动在 IVCS 患者支架和静脉功能中的作用仍不清楚。本研究旨在利用医学成像技术开发一个计算模型,模拟支架置入后的 IVCS,从而填补这一知识空白。方法:本研究使用患者特异性模型来分析下肢运动对支架置入后血液动力学的影响。我们进行了一项综合分析,以评估特定下肢运动(包括屈髋、踝关节运动和气压)对治疗静脉内血液动力学特征的影响。分析评估了壁剪切应力 (WSS)、振荡剪切指数 (OSI) 和停留时间 (RRT) 等参数。结果显示结果表明,支架植入术后,髋关节屈曲会明显破坏髂静脉分叉处的血流动力学。双侧和左侧屈髋与髂静脉交界处和支架段的低 WSS 和高 OSI 区域明显相关。此外,研究还发现主动踝关节运动(AAE)和间歇泵压迫(IPC)疗法可提高静脉壁低WSS区域的发生率,从而降低支架置入后血栓形成的风险。因此,主动关节运动(髋关节和踝关节)和被动运动都有可能影响支架置入后髂静脉内的局部血流环境。结论:探讨下肢运动对血液动力学的影响为减轻髂静脉支架置入术后下肢运动带来的不良影响提供了宝贵的见解。双侧和左侧髋关节屈曲对血流产生了负面影响,增加了血栓形成的风险。然而,积极的踝关节运动和间歇泵压疗法可有效改善通畅性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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