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急性缺血性中风建模及其治疗进展综述

A Review of the Advancements in the Modelling of Acute Ischemic Stroke and Its Treatment.

作者信息

Johnson Sarah, Dwivedi Anushree, Mirza Mahmood, McCarthy Ray, Gilvarry Michael

机构信息

Cerenovus (Johnson & Johnson), Galway Neuro Technology Centre, Galway, Ireland.

出版信息

Front Med Technol. 2022 Jun 8;4:879074. doi: 10.3389/fmedt.2022.879074. eCollection 2022.

Abstract

neurovascular models of large vessel occlusions (LVOs) causing acute ischemic stroke (AIS) are used extensively for pre-clinical testing of new treatment devices. They enable physicians and engineers to examine device performance and the response of the occlusion to further advance design solutions for current unmet clinical needs. These models also enable physicians to train on basic skills, to try out new devices and new procedural approaches, and for the stroke team to practice workflows together in the comfort of a controlled environment in a non-clinical setting. Removal of the occlusive clot in its entirety is the primary goal of the endovascular treatment of LVOs mechanical thrombectomy (MT) and the medical treatment thrombolysis. In MT, recanalization after just one pass is associated with better clinical outcomes than procedures that take multiple passes to achieve the same level of recanalization, commonly known as first pass effect (FPE). To achieve this, physicians and engineers are continually investigating new devices and treatment approaches. To distinguish between treatment devices in the pre-clinical setting, test models must also be optimized and expanded become more nuanced and to represent challenging patient cohorts that could be improved through new technology or better techniques. The aim of this paper is to provide a perspective review of the recent advancements in the modeling of stroke and to outline how these models need to advance further in future. This review provides an overview of the various models used for the modeling of AIS and compares the advantages and limitations of each. models remain an extremely useful tool in the evaluation and design of treatment devices, and great strides have been made to improve replication of physiological conditions. However, further advancement is still required to represent the expanding indications for thrombectomy and thrombolysis, and the generation of new thrombectomy devices, to ensure that smaller treatment effects are captured.

摘要

用于模拟导致急性缺血性中风(AIS)的大血管闭塞(LVO)的神经血管模型被广泛用于新治疗设备的临床前测试。它们使医生和工程师能够检查设备性能以及闭塞的反应,以进一步推进针对当前未满足的临床需求的设计解决方案。这些模型还使医生能够训练基本技能、试用新设备和新的手术方法,并使中风治疗团队能够在非临床环境的可控舒适环境中共同练习工作流程。完全清除闭塞性血栓是LVO血管内治疗(机械取栓术(MT))和药物治疗(溶栓)的主要目标。在MT中,单次通过后的再通与多次通过才能达到相同再通水平的手术相比,临床结果更好,这通常被称为首次通过效应(FPE)。为了实现这一目标,医生和工程师不断研究新设备和治疗方法。为了在临床前环境中区分治疗设备,测试模型也必须进行优化和扩展,使其更加细致入微,并代表那些可以通过新技术或更好的技术得到改善的具有挑战性的患者群体。本文的目的是对中风建模的最新进展进行综述,并概述这些模型未来需要如何进一步发展。本综述概述了用于AIS建模的各种模型,并比较了每种模型的优缺点。这些模型在治疗设备的评估和设计中仍然是极其有用的工具,并且在改善生理条件的复制方面已经取得了很大进展。然而,仍需要进一步发展,以代表取栓术和溶栓术不断扩大的适应症以及新取栓设备的产生,以确保能够捕捉到较小的治疗效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/052d/9214215/8a383eb2ae3e/fmedt-04-879074-g0001.jpg

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