大脑中动脉分叉动脉瘤的治疗:新型 Contour 设备与传统分流器的硅学比较

IF 3 3区 医学 Q2 BIOPHYSICS Biomechanics and Modeling in Mechanobiology Pub Date : 2024-04-08 DOI:10.1007/s10237-024-01829-3
Mengzhe Lyu, Ryo Torii, Ce Liang, Thomas W. Peach, Pervinder Bhogal, Levansri Makalanda, Qiaoqiao Li, Yiannis Ventikos, Duanduan Chen
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引用次数: 0

摘要

血管内治疗已成为脑动脉瘤的标准疗法,但如何有效治疗大脑中动脉(MCA)分叉动脉瘤仍是一项挑战。目前使用血管内线圈的血流分流技术会覆盖动脉瘤口以及邻近的血管分支,这可能会导致分支闭塞。新型血管内血流阻断器(如 Contour 装置(Cerus Endovascular))具有消除分支闭塞风险的巨大潜力。然而,新型血流阻断器与传统(腔内)血流分流器之间缺乏有效的比较。在这项研究中,采用特定的 Contour 设备和快速部署算法的血流阻断器治疗了两个硅学 MCA 分叉动脉瘤模型。计算流体动力学模拟用于检查部署装置的性能和效率。比较了每个 Contour 装置、传统分流器和未处理情况下的血流动力学参数,包括动脉瘤流入量和壁剪应力。我们的结果表明,放置装置能有效降低动脉瘤破裂的风险,而部署 Contour 装置比使用血流分流器(如 Silk Vista Baby)能减少更多血流。此外,Contour 装置还具有针对动脉瘤颈部的血流分流能力,而不会堵塞子血管。总之,本研究中介绍的硅学动脉瘤模型可作为强大的预规划工具,用于测试新的治疗技术、优化设备部署以及预测特定患者动脉瘤病例的性能。事实证明,Contour 装置能有效治疗 MCA 分叉动脉瘤,同时减少子血管闭塞。
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Treatment for middle cerebral artery bifurcation aneurysms: in silico comparison of the novel Contour device and conventional flow-diverters

Endovascular treatment has become the standard therapy for cerebral aneurysms, while the effective treatment for middle cerebral artery (MCA) bifurcation aneurysms remains a challenge. Current flow-diverting techniques with endovascular coils cover the aneurysm orifice as well as adjacent vessel branches, which may lead to branch occlusion. Novel endovascular flow disruptors, such as the Contour device (Cerus Endovascular), are of great potential to eliminate the risk of branch occlusion. However, there is a lack of valid comparison between novel flow disruptors and conventional (intraluminal) flow-diverters. In this study, two in silico MCA bifurcation aneurysm models were treated by specific Contour devices and flow-diverters using fast-deployment algorithms. Computational fluid dynamic simulations were used to examine the performance and efficiency of deployed devices. Hemodynamic parameters, including aneurysm inflow and wall shear stress, were compared among each Contour device, conventional flow-diverter, and untreated condition. Our results show that the placement of devices can effectively reduce the risk of aneurysm rupture, while the deployment of a Contour device causes more flow reduction than using flow-diverters (e.g. Silk Vista Baby). Besides, the Contour device presents the flow diversion capability of targeting the aneurysm neck without occluding the daughter vessel. In summary, the in silico aneurysm models presented in this study can serve as a powerful pre-planning tool for testing new treatment techniques, optimising device deployment, and predicting the performance in patient-specific aneurysm cases. Contour device is proved to be an effective treatment of MCA bifurcation aneurysms with less daughter vessel occlusion.

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来源期刊
Biomechanics and Modeling in Mechanobiology
Biomechanics and Modeling in Mechanobiology 工程技术-工程:生物医学
CiteScore
7.10
自引率
8.60%
发文量
119
审稿时长
6 months
期刊介绍: Mechanics regulates biological processes at the molecular, cellular, tissue, organ, and organism levels. A goal of this journal is to promote basic and applied research that integrates the expanding knowledge-bases in the allied fields of biomechanics and mechanobiology. Approaches may be experimental, theoretical, or computational; they may address phenomena at the nano, micro, or macrolevels. Of particular interest are investigations that (1) quantify the mechanical environment in which cells and matrix function in health, disease, or injury, (2) identify and quantify mechanosensitive responses and their mechanisms, (3) detail inter-relations between mechanics and biological processes such as growth, remodeling, adaptation, and repair, and (4) report discoveries that advance therapeutic and diagnostic procedures. Especially encouraged are analytical and computational models based on solid mechanics, fluid mechanics, or thermomechanics, and their interactions; also encouraged are reports of new experimental methods that expand measurement capabilities and new mathematical methods that facilitate analysis.
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